Used Bottling Plant for sale (4,258)
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Nordrhein-Westfalen
18,427 km
Mobile shredding plant
DoppstadtInventhor 9
Condition: ready for operation (used), Year of construction: 2018, operating hours: 5,000 h, functionality: fully functional, machine/vehicle number: W09368333J2D38007, conveyor belt length: 8,500 mm, conveyor belt speed: 2,000 mm/s, conveyor belt width: 1,200 mm, roller length: 3,000 mm, number of rollers: 1, No minimum price – guaranteed sale to the highest bidder!
TECHNICAL DETAILS
Conveyor belt
Width: 1,200 mm
Length: 8,500 mm
Belt speed: 2.0 m/s
Discharge height: 5,050 mm
Hopper
Loading height: 3,307 mm
Roller
Number of rollers: 1
Roller length: 3,000 mm
Maximum roller speed: 32 rpm
Permissible total weight: 33,000 kg
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MACHINE DETAILS
Dimensions & Weight
Working dimensions (L x W x H): 16,786 x 2,500 x 5,050 mm
Transport dimensions (L x W x H): 9,971 x 2,500 x 3,893 mm
Total weight: 32,000 kg
Drive
Engine type: Diesel engine
Manufacturer: MTU 6R 1300
Emission standard: Stage V
Rated power: 390 kW / 530 hp
Fuel tank capacity: 950 l
Operating hours: 5,000 h
EQUIPMENT
Overband magnet
Listing
Hessisch Oldendorf
18,374 km
Screening plant
MetsoNordtrack S4.9
Call
Condition: excellent (used), functionality: fully functional, fuel type: diesel, overall weight: 38,800 kg, Year of construction: 2023, operating hours: 1,707 h, Conveyor belts: hydraulically foldable
Engine type / engine power: C4.4 Tier 4 Final / 102 kW
Transport weight: approx. 38,800 kg
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Engine manufacturer: Caterpillar
Transport dimensions: 18,500 x 3,200 x 3,400 mm (L x W x H)
Volume of feed hopper: 10 m³
Grizzly screen: hydraulically foldable with remote control
Screen area, lower deck: 5,490 x 1,524 mm
Screen area, upper and middle decks: 6,100 x 1,524 mm
Screening plant type: classifying screen with three screen decks
Throughput: up to 600 t/h (application-dependent)
Listing
Butzbach
18,532 km
Mobile shredding plant
WillibaldMZA 2500/Zerkleinerer/Schredder/Häcksler
Call
Condition: excellent (used), Year of construction: 1988, operating hours: 3,100 h, functionality: fully functional, overall weight: 8,960 kg, Willibald MZA 2500/Shredder/Chipper
• Manufacturer: Willibald
• Model: MZA 2500
• Year of manufacture: 1988
• Operating hours: 3,100 hrs
• Engine: V6 Mercedes-Benz
• Throughput: 75 m³/h depending on material
• Feed opening: 500 mm
• Swinging hammers
• Suitable for shredding organic material for composting (garden waste, pruned wood up to a diameter of 30 cm)
• Capable of reducing waste wood and used timber up to a diameter of 30 cm
• Number of axles: 2 tandem/dual axles
• Brake system: Air brakes
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• Towing eye: 40 mm
• Total weight: 8,960 kg
• German machine
• Immediately operational
• This offer is non-binding and subject to prior sale.
- Subject to intermediate sale.
- Errors and/or typographical mistakes excepted.
- Sale according to our general terms and conditions.

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+44 20 806 810 84
+44 20 806 810 84
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*per listing / month
Listing
Nattheim
18,550 km
Window production plant
WeinigUnicontrol 10
Call
Condition: used, Year of construction: 2000, Storage location: Nattheim
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Listing
Zheng Zhou Shi
10,533 km
Crushing equipment
Mingyuan Dry and Wet Ball MillCustomerizable Model for ball mill plant
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Condition: new, functionality: fully functional, Year of construction: 2026, Dry and Wet Ball Mill: Structure, Operation, and Technical Details
A ball mill is a fundamental grinding device used in mineral processing, cement manufacturing, chemical production, and other industrial applications. It works by rotating a cylindrical shell filled with grinding media—usually steel balls—causing impact and friction that reduce materials to fine powder. Based on the grinding environment, ball mills are classified into dry and wet types, each suited for specific materials and process requirements.
Working Principle
Both dry and wet ball mills operate on the same mechanical principle. The rotating cylinder, driven by a motor through a gear system, lifts the grinding media and material along the inner wall. As the rotation continues, the balls fall under gravity, striking and grinding the material. The difference lies in the presence or absence of a liquid medium during grinding.
Dry Ball Mill
A dry ball mill is used when the material must remain moisture-free or when water could affect product quality. It is commonly applied in cement clinker, limestone, quartz, and refractory material grinding. The discharge can be either grate type or overflow type, depending on the desired fineness.
Technical Features:
Feeding size: ≤25 mm
Discharge size: 0.075–0.4 mm
Capacity: 0.65–90 t/h
Liner material: High manganese steel or wear-resistant alloy
Drive system: Gear-driven or direct-coupled motor
Dust control: Equipped with air exhaust and dust collector
Advantages:
Suitable for materials sensitive to moisture
No drying process required after grinding
Lower corrosion risk and simpler maintenance
Easier material classification and separation
Limitations:
Dry grinding produces more dust and heat, requiring efficient ventilation and dust collection systems.
Wet Ball Mill
A wet ball mill operates with water or another liquid medium added to the material. The slurry formed during grinding improves efficiency by reducing friction and preventing excessive heat buildup. It is widely used in ore beneficiation, ceramics, and chemical industries.
Technical Features:
Feeding size: ≤25 mm
Discharge size: 0.074–0.2 mm
Capacity: 0.65–615 t/h
Liner material: Rubber or high-chromium steel
Discharge method: Overflow or grate type
Auxiliary equipment: Classifier, pump, and thickener for slurry circulation
Advantages:
Higher grinding efficiency and finer particle size
Reduced dust and noise levels
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Continuous operation suitable for beneficiation circuits
Better control of particle uniformity
Limitations:
Requires drying if the final product must be in powder form and involves more complex slurry handling.
The selection between dry and wet grinding depends on the material characteristics, downstream process, and environmental conditions. Dry mills are preferred for materials that must stay moisture-free, while wet mills are ideal for fine grinding and slurry-based processes.
Conclusion
Dry and wet ball mills share the same mechanical structure but differ in their grinding environment and application scope. The dry type offers simplicity and low maintenance for moisture-sensitive materials, while the wet type provides higher efficiency and finer output for mineral and chemical processing. Understanding their technical parameters and operational differences ensures optimal equipment selection, improved productivity, and reliable performance in industrial grinding operations.
Discover more used machines
Listing
Zheng Zhou Shi
10,533 km
Crushing equipment
Jaw crusher PE900X1200stone crusher plant 300-500 tph
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Condition: new, Year of construction: 2025, For crushing marble, sandstone, and quartzite, various types of crushers can be used depending on the properties of the raw materials and the desired final product specifications. Here are some common types of crushers that may be suitable for processing these materials:
1. Jaw Crusher:
- Jaw crushers are commonly used for primary crushing. They are robust machines that handle tough materials, making them suitable for breaking down hard and abrasive stones like marble and quartzite.
2. Impact Crusher:
- Impact crushers are versatile and suitable for both primary and secondary crushing. They work by impacting the material with hammers or blow bars, producing a high reduction ratio. Impact crushers can be effective for shaping the final product.
3. Cone Crusher:
- Cone crushers are often used for secondary or tertiary crushing. They are suitable for processing harder stones and can produce well-shaped and fine-grained aggregates.
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4. Gyratory Crusher:
- Gyratory crushers are used for large-scale primary crushing. They have a conical-shaped head and are well-suited for handling abrasive materials. However, they are less commonly used than jaw or cone crushers.
5. Vertical Shaft Impact (VSI) Crusher:
- VSI crushers are suitable for shaping and producing artificial sand. They operate by throwing the material against a set of anvils or impellers to break it down into finer particles.
6. Hammer Crusher:
- Hammer crushers are used for crushing softer materials like sandstone. They operate by applying force to the material, causing it to break along natural fault lines.
7. Roll Crusher:
- Roll crushers are used for reducing the size of friable materials. They consist of two counter-rotating rolls that compress the material between them.
8. Crawler Mobile Crusher:
- Mobile crushers offer flexibility and mobility, allowing them to be used directly at the quarry or job site. Crawler mobile crushers can handle various types of stones, including marble, sandstone, and quartzite.
9. Screening Equipment:
- After the initial crushing stage, screening equipment such as vibrating screens may be used to separate different sizes of crushed material.
10. Dust Suppression Systems:
- Crushing operations can generate dust, and dust suppression systems are used to minimize environmental and health impacts.
When selecting a crusher for marble, sandstone, or quartzite, consider factors such as the hardness of the material, the desired final product specifications, and the production capacity required. Additionally, it's important to integrate the crushing process into an overall plant design that may include screening, conveying, and washing equipment depending on the specific needs of the application.
Listing
Zheng Zhou Shi
10,533 km
Crushing equipment
Stone crusher /rock crushing equipmentFixed & Mobile stone crushing plant
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Condition: new, Year of construction: 2025, Introduction Of Jaw Crusher Plant
The capacity vary according customer request. And in order to meet the different demands of customers, the production line can equip with cone crusher, dust removal equipment and other equipment. It is suitable for the materials like hard limestone, granite,basalt, pebble, metallurgy slag and artificial sand making work. It is widely used in the industries of hydroelectric, building materials, highway, and urban construction. And according to different technological requirement, various types of equipment can be combined to meet the demands of different customers.
Product Advantages of Stone Crusher Machine Plant
1.High reliability, good stability
2.Convenient maintenance, easy operation
3.Low operation costs, wide application range
4.Laminating crushing makes good discharging grain shape
We also provide other stone crushing solutions like
1. Vibrating feeder + Jaw crusher + Fine jaw crusher + Vibrating screen
2. Vibrating feeder + Jaw crusher + Impact crusher + Vibrating screen
3. Vibrating feeder + Heavy hammer crusher + Vibrating screen
4. Sand Production Line
5. Gravel / Aggregate production line
A stone crushing plant for sand and aggregate production involves several stages and equipment. Here's an overview of the process and the main components involved:
Process Overview
1. Primary Crushing: Large stones from the quarry are fed into a primary crusher, typically a jaw crusher, which reduces them to smaller, manageable sizes.
2. Secondary Crushing: The output from the primary crusher is further reduced in size by a secondary crusher, usually a cone crusher or impact crusher.
3. Screening: The crushed material is separated into different size fractions using vibrating screens. Oversized material is returned to the crushers for further reduction.
4. Sand Making: For producing sand, the material might be passed through a sand making machine, like a vertical shaft impact crusher, to achieve the desired shape and size.
5. Washing: The final product is often washed to remove impurities and improve the quality of the aggregate.
6. Stockpiling: The finished product is stored in stockpiles before being transported to customers.
Main Components of stone crushing plant
1. Jaw Crusher: Used for primary crushing of large stones.
2. Cone Crusher or Impact Crusher: Used for secondary crushing to produce finer aggregates.
3. Vibrating Screen: Separates the crushed material into different size fractions.
4. Sand Making Machine: Special equipment for producing sand.
5. Belt Conveyors: Transport materials between different stages of the process.
6. Vibrating Feeder: Feeds raw material into the crushers evenly and continuously.
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7. Sand Washer: Cleans the sand by removing impurities.
8. Control System: Manages the entire process, ensuring efficient and safe operation.
Implementing a well-designed stone crushing plant can significantly increase production efficiency and produce high-quality sand and aggregate.
Listing
Zheng Zhou Shi
10,533 km
Sand washing plant for silica sand
Wheel bucket / Spiral sand washerSilica / M sand washing machine
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Condition: new, functionality: fully functional, power: 11 kW (14.96 HP), Year of construction: 2025, A spiral-type sand washer machine, also known as a spiral sand washing machine or screw sand washer, is a piece of equipment designed for washing, classifying, and dewatering sand and other granular materials. This type of sand washer typically features a spiral or screw-shaped structure for the purpose of lifting, conveying, and washing materials.
Here are key features and aspects of a spiral-type sand washer machine:
1. Spiral Structure: The core component of the machine is a spiral or screw-shaped structure, often enclosed within a tub or trough. This spiral impeller is responsible for lifting, conveying, and washing the sand as it rotates.
2. Tub or Trough Design: The spiral structure is usually housed within a tub or trough that holds the water and sand mixture. This design allows for efficient washing and separation of impurities from the sand.
3. Multiple Blades: The spiral impeller typically has multiple blades or flights that provide mechanical agitation to the sand, ensuring thorough cleaning.
4. Water Injection: Water is injected into the tub or trough to aid in the washing process. The combination of water and the rotating spiral helps to remove impurities from the sand.
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5. Adjustable Weirs: Some spiral-type sand washers have adjustable weirs or gates that control the flow of water and the retention time of the sand in the machine, allowing for customization of the washing process.
6. Classification and Dewatering: Spiral sand washers often include features for classifying and dewatering the sand. This may involve the use of a separate compartment or mechanism for fine sand recovery and water drainage.
7. Variable Speed: The rotational speed of the spiral can often be adjusted to optimize the washing process for different types of materials and particle sizes.
8. Capacity: The capacity of a spiral-type sand washer is influenced by factors such as the size of the machine, the pitch of the spiral, and the efficiency of the washing process. Different models are available to suit various production requirements.
9. Materials Handling: Spiral sand washers are commonly used in applications such as aggregate processing, mining, concrete production, and other industries where the removal of impurities from sand is essential.
10. Ease of Maintenance: Many spiral-type sand washers are designed for easy maintenance, with accessible components and inspection points.
Spiral-type sand washer machines are efficient tools for cleaning and processing sand, ensuring that the final product meets quality standards for use in construction, concrete production, and other applications. The specific features and capabilities of these machines can vary between different models and manufacturers.
Listing
Zheng Zhou Shi
10,533 km
Crushing equipment
Double roller crusher /roller sand makerStationary&portable sand crushing plant
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Condition: new, functionality: fully functional, power: 30 kW (40.79 HP), Year of construction: 2025, A double roller crusher for sand making, also known as a roller sand making machine, is a processing machine that utilizes two rollers to crush and reshape coarse-grained materials such as rock, stone, and ore into finer particles. This type of equipment is commonly used in the production of construction aggregates, artificial sand, and other materials used in various industries.
Here are key features and aspects of a double roller crusher for sand making:
1. Double Roller Design:
- The crusher has two parallel, counter-rotating rollers that exert pressure on the material. The gap between the rollers can be adjusted to control the size of the crushed particles.
2. Crushing Mechanism:
- The material is fed between the two rollers, and as they rotate, the material is drawn into the crushing zone. The rollers compress and crush the material, reducing it to the desired size.
3. Material Feed and Discharge:
- The material is typically fed into the top of the crusher and is crushed between the rollers. The crushed material exits at the bottom of the machine.
4. Adjustable Gap Settings:
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- The gap between the rollers is adjustable, allowing for control over the final size of the crushed material. This feature is essential for producing materials of different particle sizes.
5. Roller Surface Design:
- The surface of the rollers may be smooth or have corrugations to enhance the gripping and crushing action. The choice of roller surface design depends on the characteristics of the material being processed.
6. High Efficiency:
- Double roller crushers are known for their high efficiency in crushing and shaping materials. The dual roller design provides a more consistent and controlled process compared to single roller crushers.
7. Versatility:
- These crushers are versatile and can be used for various materials, including hard and soft rocks, ores, and other aggregates. They are particularly suitable for producing artificial sand.
8. Dust and Noise Control:
- Some double roller crushers are equipped with features to control dust emissions and reduce noise during operation, improving the working environment.
9. Application in Sand Making:
- Double roller crushers for sand making are commonly used to produce fine aggregates and artificial sand. They are employed in the production of high-quality sand for construction and other applications.
10. Maintenance and Safety:
- Regular maintenance is essential for optimal performance. Safety features, such as emergency stops and safety guards, are often incorporated to ensure safe operation.
11. Motor and Drive System:
- A powerful motor and a reliable drive system are essential components to drive the rotation of the rollers and ensure consistent and efficient crushing.
The specific design and features of double roller crushers for sand making can vary among different models and manufacturers. When selecting or using this type of equipment, it's important to refer to the manufacturer's guidelines and specifications for proper operation and maintenance.
Listing
Zheng Zhou Shi
10,533 km
Powder grinding mill
ball mill for mining &fine powder makingsilica/Barite/limestone powder plant
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Condition: new, Year of construction: 2026, power: 300 kW (407.89 HP), Ball Mill for Mining & Fine Powder Making:
A ball mill is a fundamental grinding device widely used in mining, metallurgy, cement, and chemical industries. It is designed to grind ores and other materials into fine powder through impact and attrition between steel balls and the material inside a rotating cylindrical shell. In mining plants, ball mills are essential for ore beneficiation, while in powder-making industries, they ensure uniform particle size and high surface area for further processing.
Working Principle
The ball mill operates on the principle of impact and friction. As the cylindrical shell rotates around its horizontal axis, the grinding media—usually steel or ceramic balls—are lifted along the inner wall by centrifugal force and friction. When they reach a certain height, they fall freely, striking and grinding the material below. This repeated motion breaks down the material into fine particles. The process can be carried out in dry or wet conditions depending on the application.
Structural Composition
A standard ball mill consists of several main components:
Feeding part: Ensures uniform material input through a feeder or screw conveyor.
Discharging part: Can be grate type or overflow type, depending on the discharge method.
Rotating part: The cylindrical shell made of steel plates, lined with wear-resistant liners.
Transmission system: Includes motor, reducer, small transmission gear, and electrical control.
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Grinding media: Steel or ceramic balls of various diameters for efficient grinding.
The internal liner design and ball size distribution are optimized to achieve maximum grinding efficiency and minimal energy consumption.
Technical Details/Typical Specifications:
Feeding size: ≤25 mm
Discharge size: 0.074–0.4 mm
Capacity: 0.65–615 t/h (depending on model and material hardness)
Cylinder speed: 18–38 r/min
Power: 18.5–4500 kW
Liner material: High manganese steel, rubber, or alloy steel
Grinding media load: 30–45% of cylinder volume
Operating Modes:
Dry grinding: Used for materials that must remain moisture-free, such as cement clinker, limestone, and quartz.
Wet grinding: Common in ore beneficiation, where water or slurry improves grinding efficiency and particle uniformity.
Application in Mining and Powder Production
In mining operations, ball mills are used after crushing to further reduce ore size and liberate valuable minerals. They are integrated into grinding circuits with classifiers, hydrocyclones, and flotation systems. The ground material is classified by size, and oversized particles are returned to the mill for regrinding. This closed-circuit system ensures consistent product fineness and efficient energy use.
In fine powder production, ball mills are used to produce materials such as silicate, ceramic powder, refractory materials, and chemical raw materials. The uniform particle size achieved by ball milling enhances product quality and performance in downstream applications.
Conclusion
A ball mill is an indispensable piece of equipment for both mining and fine powder making. Its ability to grind materials into fine, uniform particles makes it vital for ore beneficiation and industrial powder production. With flexible configurations, high efficiency, and reliable operation, modern ball mills provide a cost-effective and energy-efficient solution for large-scale grinding, ensuring consistent quality and productivity across diverse applications.
Listing
Zheng Zhou Shi
10,533 km
Fine Powder Grinding Plant
Cement mill & Ultrafine Grinding MillFine Powder Grinding Plant
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Condition: new, functionality: fully functional, Year of construction: 2026, Cement Mill & Ultrafine Grinding Mill
🏗️ Introduction to Cement Mill & Ultrafine Grinding Mill
In the world of construction and materials processing, achieving the right particle size is essential. Introducing the Cement Mill and Ultrafine Grinding Mill—two pivotal machines designed to deliver superior grinding performance for cement production and ultrafine materials. Let’s dive into their features and applications! 💼
🔥 What is a Cement Mill?
A Cement Mill is a crucial piece of equipment in cement production. It grinds clinker, gypsum, and other additives to produce fine cement powder. This machine ensures the optimal particle size for high-quality cement, essential for building robust structures. 🚀
🔧 What is an Ultrafine Grinding Mill?
An Ultrafine Grinding Mill is designed to produce extremely fine powders from various raw materials, such as minerals, chemicals, and industrial waste. It operates at high efficiency, delivering ultra-fine materials for advanced applications like coatings, plastics, and ceramics. 🌟
💼 Key Benefits of Using Cement Mill & Ultrafine Grinding Mill
1. High Efficiency: Both mills are engineered for maximum efficiency, ensuring rapid processing times and reduced energy consumption. 🌿💡
2. Superior Grinding Performance: Achieve consistent, high-quality output with precise control over particle size. 🏭
3. Versatility: Suitable for a wide range of materials, making them essential for various industrial applications. 🌳
4. Durability and Reliability: Built with robust materials, these mills offer long-lasting performance in demanding industrial environments. 💪
📈 Applications in Industry
Cement Mill Applications:
1. Cement Production: Essential for producing high-quality cement for construction projects.
2. Infrastructure Development: Used in creating concrete for roads, bridges, and buildings.
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Ultrafine Grinding Mill Applications:
1. Mineral Processing: Producing ultra-fine powders for advanced material applications.
2. Chemical Manufacturing: Used in creating fine chemicals for various industrial processes.
3. Environmental Applications: Grinding industrial waste for recycling and reuse. ♻️
🌟 Conclusion
Whether you’re in construction, materials processing, or advanced manufacturing, the Cement Mill and Ultrafine Grinding Mill are indispensable tools. Their efficiency, versatility, and superior performance make them a valuable addition to any production line. Contact us today to learn more about these innovative machines and how they can revolutionize your operations! 📞
Listing
Zheng Zhou Shi
10,533 km
Crushing equipment
Henan Mingyuan HSI Impact crusherStone crushing plant for sand aggregate
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Condition: new, Year of construction: 2026, HSI Crusher and Impact Crusher: Efficient Solutions for Limestone and Talc Crushing
Introduction
An HSI crusher (Horizontal Shaft Impact crusher) is a highly efficient crushing machine widely used in mining, quarrying, and aggregate production. As a key component in a limestone crushing plant, it delivers precise shaping and high reduction ratios. Whether used as a limestone crusher or talc crusher, the HSI impact crusher ensures consistent particle size and superior performance across various materials.
Features of HSI Impact Crusher
High Crushing Efficiency
The impact mechanism uses high-speed rotors and blow bars to achieve fine and uniform crushing results.
Versatile Applications
Suitable for medium-hard to soft materials such as limestone, talc, gypsum, and coal.
Adjustable Output Size
Hydraulic or mechanical adjustment systems allow easy control of product size.
Durable Components
Wear-resistant blow bars and liners extend service life and reduce maintenance costs.
Easy Maintenance
Quick access doors and modular design simplify inspection and part replacement.
Energy Efficiency
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Optimized rotor design and balanced operation minimize energy consumption.
Technical Specifications (Typical Range)
Model:1214 Max input size: 300 mm, Capacity: 100-140 t/h
Model:1315 Max input size: 350mm Capacity: 150-200 t/h
Specifications may vary depending on material hardness and feed size.
Applications
Limestone Crushing Plant: Primary or secondary crushing of limestone for cement, aggregates, and construction materials.
Talc Crusher: Fine crushing of soft minerals like talc and gypsum for powder production.
Aggregate Production: Produces cubical-shaped aggregates ideal for asphalt and concrete.
Recycling: Effective for crushing concrete, asphalt, and demolition waste.
Why Choose a Reliable Impact Crusher Manufacturer
Selecting a trusted impact crusher manufacturer ensures high-quality materials, advanced design, and reliable after-sales service. A professional supplier provides customized solutions for specific materials, such as limestone crusher or talc crusher, ensuring optimal performance and long-term durability.
Impact Crusher for Sale
Modern impact crushers for sale feature advanced automation, energy-saving systems, and improved wear resistance. They are ideal for operators seeking high productivity, low operating costs, and consistent output quality in both stationary and mobile crushing setups.
Conclusion
An HSI impact crusher is a versatile and efficient solution for crushing limestone, talc, and other medium-soft materials. With robust design, adjustable settings, and high throughput, it plays a vital role in any limestone crushing plant or mineral processing line. Choosing the right impact crusher manufacturer ensures reliable performance, reduced downtime, and long-term value.
Listing
Zheng Zhou Shi
10,533 km
Crushing equipment
Stone crushing production lineStone crushing screening plant
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Condition: new, functionality: fully functional, Year of construction: 2026, A stone crushing plant for sand and aggregate making is a facility where stones and rocks are crushed into smaller pieces or gravel. It typically includes several stages of crushing and screening to produce various sizes and grades of sand and aggregate materials, which are essential in construction, landscaping, and other applications. Here's an introduction to the components and processes involved in a typical stone crushing plant:
### Components of a Stone Crushing Plant
1. Primary Crusher:
- Purpose: The primary crusher, often a jaw crusher or gyratory crusher, initially breaks down large rocks into smaller pieces.
- Function: It handles raw materials from the quarry or mine and prepares them for further processing.
2. Secondary Crusher:
- Purpose: A secondary crusher, such as a cone crusher or impact crusher, further reduces the size of the crushed stones.
- Function: It refines the material after primary crushing, producing smaller and more uniform-sized aggregates.
3. Tertiary Crusher (Optional):
- Purpose: In some configurations, a tertiary crusher like a vertical shaft impactor (VSI) may be used for shaping and fine crushing.
- Function: It produces finely crushed materials for specific applications, such as concrete production or road base.
4. Screening Equipment:
- Purpose: Screening equipment like vibrating screens or trommel screens separates the crushed materials into different sizes.
- Function: It classifies the aggregates into various grades according to size, ensuring uniformity and meeting specifications.
5. Conveyor Systems:
- Purpose: Conveyor belts transport materials between different stages of crushing and screening.
- Function: They ensure efficient material handling and continuous operation within the plant.
6. Washing Equipment (Optional):
- Purpose: Washing equipment, such as sand washers or scrubbers, may be used to remove impurities from sand and aggregate products.
- Function: It improves the quality of the final products by cleaning them and removing fines or contaminants.
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### Processes Involved
- Primary Crushing: Large rocks are fed into the primary crusher and reduced to a manageable size.
- Secondary Crushing: The crushed materials from the primary crusher are further processed by secondary crushers to achieve the desired aggregate sizes.
- Screening: The crushed and sized materials are screened to separate them into different sizes and grades.
- Material Handling: Conveyor systems transport materials between different stages of the crushing and screening process.
Final Product Handling:Finished products, such as sand and various sizes of aggregates, are stored or loaded for transport to customers or construction sites.
Applications
- Construction: Used in the production of concrete, asphalt, and road base materials.
- Landscaping: Provides decorative and functional aggregates for gardens, pathways, and driveways.
infrastructure: Essential for building foundations, drainage systems, and structural fill.
As for the capacity we have 30 t/h, 30-50 t/h, 50-100 t/h, 100-150 t/h, 150-200 t/h, 200-300 t/h, 300-500 t/h, and both stationary crushing plant and mobile crushing plant are available for option.
Listing
Zheng Zhou Shi
10,533 km
Roll forming line
Rod ball mill / Rod Grinding MillFor Sand and mining beneficiation plant
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Condition: new, Year of construction: 2026, We have various kinds of ball grinding mill such as batch ball mill, rod mill, cement ball mill, mining ball mill, welcome to contact our team for further details according to your specific requirements.
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Listing
Zheng Zhou Shi
10,533 km
Cement mill,clinker grinding plant
Clinker grinding mill / cement ball millcement grinding with air classifier
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Year of construction: 2026, condition: new, functionality: fully functional, A cement clinker grinding mill is a specialized equipment used to grind the hard nodular clinker into fine powder, which is cement. Most cement is currently ground in ball mills and also vertical roller mills, which are more effective than ball mills.
Here are key features and information about cement clinker grinding mills:
1. Raw Materials:
- The main raw material for making cement is clinker, which is produced by sintering limestone and clay. Other materials such as gypsum, fly ash, or slag may also be added during the grinding process to achieve specific properties.
2. Grinding Process:
- The clinker and other additives are finely ground in the grinding mill to produce cement. The grinding process is a crucial step in cement production and contributes significantly to the final quality of the product.
3. Types of Mills:
- Ball Mills: Traditional ball mills are commonly used for grinding clinker. They operate by rotating a cylinder with steel grinding balls, causing the balls to fall back into the cylinder and onto the material to be ground.
- Vertical Roller Mills (VRM): VRM technology has become increasingly popular for clinker grinding. These mills use a rotating table with rollers to crush and grind the clinker, providing energy efficiency and a smaller footprint compared to ball mills.
4. Gypsum Addition:
- Gypsum is often added during the grinding process to control the setting time of the cement. It prevents flash setting of the clinker and facilitates the formation of a workable and pumpable cement paste.
5. Quality Control:
- Quality control measures, such as monitoring the fineness of the cement, chemical composition, and other properties, are implemented during the grinding process to ensure the final product meets the required specifications and standards.
6. Clinker Cooling:
- Before grinding, the clinker is produced by heating the raw materials in a kiln. The clinker is then cooled before entering the grinding mill to prevent excessive heat build-up during grinding.
7. Dust Collection and Environmental Considerations:
- Dust collectors and air pollution control systems are often employed to capture and control the dust generated during the grinding process, addressing environmental and safety concerns.
8. Packaging and Storage:
- After grinding, the cement is typically stored in silos before being packaged in bags or dispatched in bulk for distribution to construction sites or for sale in the market.
Cement clinker grinding mills play a crucial role in the cement production process, and advancements in technology continue to improve the efficiency and environmental sustainability of the grinding process.
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Technical details
We have different options for different requirements, please contact our team for more info.
Listing
Zheng Zhou Shi
10,533 km
Cralwer / Track Mounted Mobile Crusher
Crawler / Track Mounted Mobile Crusher200 t/h for sand gravel crushing plant
Call
Condition: new, functionality: fully functional, power: 450 kW (611.83 HP), Year of construction: 2025, ### Crawler Mobile Crusher / Track-Mounted Mobile Stone Crusher: Introduction and Application
Introduction:
Crawler mobile crushers, also known as track-mounted mobile crushers, are versatile and highly efficient machines designed for crushing various materials on-site. Unlike traditional fixed crushers, these mobile units are mounted on tracks, allowing them to navigate rough terrains and remote locations with ease.
These crushers integrate feeding, crushing, screening, and conveying processes into one system, providing flexibility and reducing the need for multiple pieces of equipment. Powered by diesel engines, they offer mobility, reduced setup time, and a compact design that simplifies transportation.
Key Features:
1. Mobility: Track-mounted design ensures ease of movement across different sites.
2. Versatility: Suitable for crushing various types of materials, including rocks, ores, and demolition waste.
3. Efficiency: High-performance crushing and screening capabilities.
4. Eco-friendly: Equipped with dust suppression and noise reduction systems.
5. Automation: Advanced control systems for smooth operation and minimal manual intervention.
Applications:
1. Quarrying and Mining: Ideal for crushing hard and abrasive stones such as granite, basalt, and limestone. They efficiently process raw materials for construction aggregates and mining operations.
2. Construction and Demolition: Perfect for on-site crushing of demolition waste, including concrete, bricks, and asphalt. This reduces the volume of waste and allows for recycling of materials, contributing to sustainable construction practices.
3. Infrastructure Projects: Widely used in road construction, railway ballast production, and infrastructure development. Their mobility ensures they can operate close to the construction site, reducing material transportation costs.
4. Recycling: Effective in recycling operations, particularly for crushing and processing concrete and asphalt debris. This contributes to reducing landfill use and conserving natural resources.
5. Aggregate Production: Essential for producing high-quality aggregates used in construction projects. Their capability to produce different sizes of aggregates meets various industry standards and requirements.
Conclusion:
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Crawler mobile crushers are indispensable in modern construction and mining operations. Their mobility, efficiency, and versatility make them a valuable asset for industries requiring on-site crushing and screening. By reducing setup time and transportation costs, they enhance operational efficiency and contribute to eco-friendly practices through material recycling.
Listing
Zheng Zhou Shi
10,533 km
Ball mill for powder and mining plant
Mingyuan Ball Mill For Fine PowderPowder grinding mill for coal, silica
Call
Condition: new, functionality: fully functional, power: 55 kW (74.78 HP), Year of construction: 2026, Ball Mill for Powder and Mining Plant: Structure, Function, and Technical Details
A ball mill is a key grinding machine widely used in mining, metallurgy, cement, chemical, and powder-making industries. It is designed to grind various ores and other materials into fine powder through impact and attrition between steel balls and the material inside a rotating cylindrical shell. In mining plants, ball mills are essential for ore beneficiation, preparing materials for flotation, magnetic separation, or leaching processes. In powder production, they ensure uniform particle size and high surface area for further processing.
Working Principle
The ball mill operates on a simple yet effective principle: as the cylindrical shell rotates around its horizontal axis, the grinding media (steel or ceramic balls) are lifted along the inner wall by centrifugal force and friction. When they reach a certain height, they fall freely, striking and grinding the material below. This repeated motion causes both impact and abrasion, reducing the material to the desired fineness. The grinding process can be performed in dry or wet conditions depending on the application.
Structural Composition
A standard ball mill consists of several main components:
Feeding part: Equipped with a feeder or screw conveyor to ensure uniform material input.
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Discharging part: Can be grate type or overflow type, depending on the discharge method.
Rotating part: The cylindrical shell made of steel plates, lined with wear-resistant liners.
Transmission system: Includes motor, reducer, small transmission gear, and electrical control.
Grinding media: Steel balls or ceramic balls of different diameters for efficient grinding.
The internal liner design and ball size distribution are optimized to achieve maximum grinding efficiency and minimal energy consumption.
Technical Details
Typical Specifications:
Feeding size: ≤25 mm
Discharge size: 0.074–0.4 mm
Capacity: 0.65–615 t/h (depending on model and material hardness)
Cylinder speed: 18–38 r/min
Power: 18.5–4500 kW
Liner material: High manganese steel, rubber, or alloy steel
Grinding media load: 30–45% of cylinder volume
Operating Modes:
Dry grinding: Suitable for materials that must remain moisture-free, such as cement clinker, limestone, and quartz.
Wet grinding: Common in ore beneficiation, where water or slurry improves grinding efficiency and particle uniformity.
Application in Mining Plants
In mining operations, ball mills are used after crushing to further reduce ore size and liberate valuable minerals. They are integrated into grinding circuits with classifiers, hydrocyclones, and flotation systems. The ground material is classified by size, and oversized particles are returned to the mill for regrinding. This closed-circuit system ensures consistent product fineness and efficient energy use.
Common Applications:
Gold, copper, iron, and zinc ore grinding
Cement clinker and slag processing
Silicate and ceramic powder production
Coal and mineral powder preparation
Conclusion
A ball mill is an indispensable piece of equipment in both powder production and mining beneficiation plants. Its ability to grind materials into fine, uniform particles makes it vital for downstream processes such as flotation, sintering, and chemical reactions.
Listing
Oss
18,581 km
Sorting plant OI
Bollegraaf & Lubo
Call
Year of construction: 2022, operating hours: 3,863 h, condition: excellent (used), functionality: fully functional, machine/vehicle number: 006682, On behalf of our customer, we hereby offer a virtually new OI sorting.
This installation can be tested in operation at the customer.
The machines consist of;
Sorting oi:
0050 Bunker belt with dosing drum BDF1200/2000*10000
0060 Ascending belt to screen HBT1200/1600*14000
0070 Cardboard screen 1640*7000
Platform
Cage ladder
0080 Adjustments to existing paper chain belt
0090 Switch cabinet included
Operating hours only 3863
In consultation with the customer and Bollegraaf, a guarantee is possible under certain conditions
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See the attached PDF for a precise technical description per machine
Listing
Menslage
18,398 km
SIDEL - filling line for non-returnable PET bottles (2007)
SIDELAbfülllinie für PET (Einweg)
Call
Condition: used, Year of construction: 2007, Overview
This complete PET bottling line was built by leading European manufacturers including Sidel, Sacmi and Sarcmi. It is designed for still and sparkling water and is also suitable for soft drinks. With a nominal output of 19,000 bottles per hour for 0.5 L and 16,000 bottles per hour for 1.5 L, it covers the full process from preform blow moulding through filling, labelling, shrink wrapping and palletizing. The core of the line is a Sidel SBO Universal 14 blow moulder (2007) feeding a Sarcmi Azzurra 70-14 isobaric filler and a Sacmi Opera 200 RF rollfed labeller.
Technical data
- Line type: Complete PET bottling line
- Different manufacturers: Sidel, Sarcmi, Sacmi, Zalkin, Zambelli, Comag, Acmi, Robopac
- Years of manufacture: 1986 - 2019
- Nominal output: 19,000 bph (0.5 L); 16,000 bph (1.5 L)
- Product: still and sparkling water, also suitable for soft drinks
- Container: PET bottles 0.5 L and 1.5 L
- Cap: Alaska PCO 1881
- Label: OPP rollfed
- Packaging: shrink film - 0.5 L 3x2 and 4x3, 1.5 L 3x2
- Palletizing: Euro pallet 800 x 1200 and 800 x 600
Scope of Delivery
- Blow Moulder | Sidel | SBO Universal 14 | 14 cavities; incl. Lanfranchi preform tilter, hopper and air recovery system | 2007
- Air Conveyors | NTS | Double chamber, approx. 60 m, 2 air fans
- Filler | Sarcmi | Azzurra 70-14 | 70 isobaric filling valves, pitch 110 | 1988
- Capper | Zalkin | 14 capping heads | 1988
- Saturator | Rivi Eng | Carborivi | 30,000 L/h | 1986
- Labeller | Sacmi | Opera 200 RF | OPP rollfed, 18 plates, non-stop automatic reel change | 2011
- Cap Ink Marker | Linx | 8900 | marking on bottle cap | 2019
- Shrink Wrapper | Zambelli | LFT70 | single track with 1-to-4 track channelizer | 2004
- Handle Applicator | Comag | H 65/1 | cardboard handle, single track | 1999
- Palletizer | Acmi | Rasar P130 | double-head, incl. pad and pallet magazines | 1996
- Pallet Wrapper | Robopac | Genesis | ring wrapping, pallet presser, waterproof covering | 2000
- Conveyors | Procomac / Comag | bottle and pack conveyors, SEW / Selpee motors, Procomac cabinet with Pro-face touch panel
Condition
Used line, well maintained with extensive annual overhauls by the manufacturers. Currently still installed and under power. The line can be viewed on request.
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Availability
Available from 12 October 2026. Location: Italy.
Listing
Menslage
18,398 km
OCME, Irundin Robino & Galandrino, Nortan Non-Returnable Glass Bottles (1998)
OCME, IrundinEinweg-Glasflaschen
Call
Condition: used, Year of construction: 1998, Overview
This complete glass bottling line was manufactured between 1996 and 1998 by various European manufacturers. The line is designed for the filling and packaging of bottles and includes depalletizing, rotary light vacuum filling, capsule application and smoothing, corking and screw capping, and automatic palletizing. The equipment is suitable for automatic bottling operations with a production capacity of approximately 10,000 bottles per hour.
Technical data
- Capacity: approx. 10,000 bottles/hour
- Application: Automatic bottling and packaging of bottles
- Filling system: Light vacuum filling
- Rinser: Penetrating nozzle rinser
- Cleaning system: Compatible with automatic CIP cleaning
- Closure types:
- T-top corks
- Pilfer caps
- Stelvin caps
- Compatible closure sizes:
- 31.5 × 44 mm
- 30 × 60 mm
- Capsule application: Automatic capsuling machine with integrated thermal heads for PVC capsule smoothing
- Capsule smoothing: Automatic smoothing machine for complex capsules and tin capsules
- Palletizer:
- Drag-type automatic palletizer
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- Compatible with European and American pallets
- Format memory for up to 15 palletizing patterns
- Utilities:
- OCME Dorado 162-T Depalletizer: 6 kW
- Irundin 36/44-8 Filler: 10 kW
- Robino & Galandrino M. Monostadio Z T 6: 4 kW
- Nortan Aurora 160: 3 kW
- Tedelta CR 504: 3 kW
- OCME P115/N/S Palletizer: 15 kW
Scope of Delivery
- Depalletizer | OCME | Dorado 162-T | 1998 | High-speed drag depalletizer
- Rotary filler | Irundin | 36/44-8 | 1998 | Light vacuum filler with penetrating nozzle rinser and CIP compatibility
- Capsule applicator | Robino & Galandrino | M. Monostadio Z T 6 | 1998 | Automatic capsuling machine with integrated thermal heads
- Capsule smoothing machine | Nortan | Aurora 160 | 1996 | Automatic capsule smoothing machine
- Corking and screw capping machine | Tedelta | CR 504 | 1998 | Automatic closure application for corks, pilfer and Stelvin caps
- Automatic palletizer | OCME | P115/N/S | 1998 | Drag-type palletizer with format memory
Listing
Menslage
18,398 km
Krones Linatronic Empty Bottle Inspector (2014)
KronesEBI (Leerflascheninspektion)
Call
Condition: used, Year of construction: 2014, Overview
This empty bottle inspector (EBI) was manufactured in 2014 by the German manufacturer Krones. The machine is designed for the inspection of empty glass bottles prior to filling in beverage production lines. It is still in production and will be professionally dismantled in early 2027 as the complete filling line will be replaced.
Technical data
- Capacity: currently running at 18,500 bph, but can also work at significantly higher speeds.
- Formats:
- 0.75l bottle
- 0,5l bottle
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- Application: Inspection of empty bottles prior to filling
- Configuration: Multiple inspection modules including base inspection, sealing surface inspection, thread inspection, mouth/finish inspection, sidewall inspection, residual liquid detection, foreign container detection, bottle height control (±2.5 mm tolerance)
- Inspection systems:Base inspection (camera) Sealing surface inspection Thread inspection (conical optics) Mouth / finish inspection Sidewall inspection with LED illumination Detection of transparent films on bottle base and sidewall Scuffing detection via sidewall camera Residual liquid detection via infrared system and high-frequency detection
- Reject systems:
- Foreign container rejection at infeed
- Contaminated bottle rejection at discharge
- Separate rejection for bottles with damaged finish or thread
- Direction of operation: Left to right
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Listing
Menslage
18,398 km
GM Gera ARCADE GEL3 RV1-186 / 95 - 16 Bottle Washer (2005)
GM GeraFlaschenreinigungsmaschine
Call
Condition: used, Year of construction: 2005, Overview
The bottle washer was previously used in a mineral water factory. Due to the good maintenance, the machine is in good condition. All basins and the machine body are made of stainless steel. The machine is still working and will be free in early 2027, when the complete line is replaced.
Tech Specs
- Capacity: 15,500 bph
- Cell Pitch: 95mm
- Bottles per row: 16
- Dimensions + Weights: Housing: 8350 x 1,860 x 2,990 mm / 21,750kg Ready for operation with attachments: 8,700 x 3,560 x 3,330mm / 37,639kg
- YOM 2005
- Formats:
- 0,5l
- 0,75l
The Machine in Detail / Equipment Features
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- Heated by steam
- Pre Cleaning and removal of residual liquids by pulsed rinsing prior to washing
- CE certified
- Chemical Dosing Pumps
- Machine data sheet included
- Rotating Spray nozzles
- Single End Machine
- Label discharge rear right
- Label press mounted to the machine
- Finger discharge + finger feed
- Bottle cells made of plastic
- Concentration measurement
- NaOH supply liquid
- Sectional view arrangement of baths
- Spindles SST
- Control Siemens S7
- Regularly maintained
- Full machine body in SST
- Vapor Discharge
Listing
Menslage
18,398 km
Kettner Blitzpac Junior E 3T Bottle packer (2003)
KettnerBottle packer
Call
Condition: used, Year of construction: 2003, Overview
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This Kettner Blitzpac Junior E 3T bottle packer, manufactured in 2003, is designed for the automatic packing of PET bottles into beverage crates. The machine is configured for the 20 x 0.5 l crate format and is equipped with 4 packing units, each with 4 x 5 positions, matching the required 20-bottle crate layout. The system uses an automated gripper head / matrix gripper assembly to pick bottles from the conveyor lanes and place them into crates. The machine includes stainless steel lane guides, modular chain conveyors, SEW-Eurodrive gearmotors, pneumatic components and safety guarding with protective fencing and transparent panels. The machine is identified as Kettner Junior E 3T / Blitzpac Junior E 3T.
Technical Data
- Manufacturer: Kettner GmbH / Krones Group
- Machine Type: Bottle packer / crate packer
- Model: Blitzpac Junior E 3T
- Year of Manufacture: 2003
- Application: Packing of bottles into crates
- Format: 20 x 0.5 l crate
- Configuration: 4 packing units, each with 4 x 5 positions
- Gripper System: Pneumatic matrix gripper for bottle handling
- Conveyor System: Modular chain conveyor with stainless steel lane guides
- Drive System: SEW-Eurodrive gearmotors
- Safety: Protective fencing, transparent guarding, safety / sensor equipment
- Electrical Supply: 230 / 400 V AC
- Current Type: 3-phase
- Frequency: 50 Hz
- Nominal Current: 13 A
- Condition: Used, installed in industrial bottling environment
Listing
Menslage
18,398 km
Krones, Kettner, GM Gera Line for Returnable Glass Bottles (2012)
Krones, Kettner,Abfülllinie für Glasflaschen (Mehrweg)
Call
Condition: used, Year of construction: 2012, Overview
This returnable glass bottling line consists of equipment from KRONES, KETTNER, GM GERA, RINK, SYSCONA, MATEC, FALTERBAUM, Bohrer and further supporting manufacturers. The line is designed for the processing of returnable glass bottles in crates, mainly in 0.33 L and 0.75 L formats. It includes the key process steps from crate depalletizing, crate sorting, bottle decapping, unpacking, bottle washing, empty bottle inspection, filling and screw capping to labelling, full bottle inspection, crate packing, crate inspection and palletizing. The existing crate depalletizer and palletizer are available on site; however, due to their age and outdated technology, it is recommended not to include this unit in the line acquisition. Instead, suitable modern depalletizing equipment can be offered and integrated into the line concept according to the buyer’s requirements. The line has a nominal filling capacity of approx. 18,000 bottles per hour and the premix system rated at 22,000 L/h. The line is scheduled for dismantling in February 2027.
Technical Data
- Line type: Returnable glass bottling line
- Application: Beverage filling in returnable glass bottles
- Formats: 0.33 L and 0.75 L glass bottles
- Packaging: Bottles in crates
- Filler capacity: 18,000 bottles/hour
- Premix capacity: 22,000 L/hour
- Closure type: Plastic screw caps
- Labelling: Wet glue labelling, 2 aggregates
- Main machine years: 1996 – 2016
- Dismantling planned: February 2027
Scope of Delivery
- Crate Depalletizer | Existing unit on site; not recommended for takeover due to outdated technology. Suitable replacement equipment can be offered and integrated
- Crate Sorting System | Syscona | Expert KSA | Sorting on 2 lanes: good / bad | 2014
- Crate Decapper | RINK | KM 690/4K | 2012
- Crate Unpacker | Kettner | Robot Junior RA3/C-T | 1996
- Bottle Washer | GM GERA | ARCADE GEL3 FV1-186/95-16 | 2005
- Crate Washer | Bohrer | R 30 | Crate washing machine | 2011
- Empty Bottle Inspector | Krones | Linatronic | 2014
- Filler / Screw Capper | Krones | Volumetic / Modulfill | 2012
- Labelling Machine | Krones | Universella | 2012
- Closure Inspection | Syscona | Expert FHK | 2016
- Inspection System | Krones | Checkmat 731 | 2012
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- Crate Packer | Kettner | 1996
- Crate Inspection | Krones | Checkmat 708 | 2011
- Palletizer | Matec | Rotomat 3B | 2002
- Falterbaum | 20000TD | Premix system; capacity 22,000 L/h | 2000
Listing
Menslage
18,398 km
Krones KES 2-4-312/25-110 Bottle Washer (2004)
KronesFlaschenreinigungsmaschine
Call
Condition: used, Year of construction: 2004, OVERVIEW
This Krones KES-2-4-312/25-110 bottle washing machine is designed for the industrial washing of returnable glass bottles in beverage production lines. The machine is equipped with 25 bottles per row and has a rated capacity of up to approx. 28,000 bottles per hour.
The machine can process bottle formats from 300 ml up to 1,000 ml, making it suitable for breweries, mineral water producers, soft drink producers and other returnable bottle operations. The washing machine is mainly built in stainless steel, with an insulated stainless steel caustic bath and steam heating system.
The machine will be delivered completely reconditioned. The reconditioning scope includes the bottle infeed and outfeed, heating system, pumps, main chain, valves, piping, spray nozzles, label removal station and electrical panel. A test run is also included.
The machine is offered with Siemens S7 PLC control and is available as a reconditioned machine at a special price.
TECHNICAL DATA
- Manufacturer: Krones
- Type: KES-2-4-312/25-110
- Machine Type: Bottle washing machine
- Year of Manufacture: 2004
- Capacity: approx. 28,000 bottles/hour
- Bottle Rows: 25 bottles per row
- Bottle Formats: approx. 300 ml up to 1,000 ml
- Control System: Siemens S7 PLC
- Heating System: Steam heating
- Construction: Mainly stainless steel, insulated stainless steel caustic bath
- Bottle Cell Pitch: 110 mm
- Machine Cell Material: Polypropylene
- Bottles per Carrier: 25 pcs
- Total Bottle Carriers: 274 pcs
- Minimum Control Range: approx. 12,000 bottles/hour
- Maximum Control Range: approx. 35,000 bottles/hour
- Electrical Supply: 400 / 230 V, 3-phase, 50 Hz
- Control Voltage: 24 V DC
- Empty Weight: approx. 45,000 kg
- Operating Weight: approx. 87,000 kg
- Machine Length: approx. 11,766 mm
- Machine Width without Attachments: approx. 3,136 mm
- Machine Height without Floor Clearance: approx. 3,200 mm
- Water Consumption in Operation: approx. 6.38 m³/h
- Water Consumption per Bottle: approx. 0.22 l
- Main Chain: approx. 4 years old, will be reconditioned
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- Reconditioning Scope: Bottle infeed and outfeed, heating system, pumps, main chain, valves, piping, spray nozzles, label removal station and electrical panel
- Test Run incl.
- Delivery Terms: EXW, unpacked
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