Used Chiron Mill Fx 1250 for sale (11,514)
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Listing
Zheng Zhou Shi
8,333 km
Powder grinding machine
Fine powder grinding mill, clinker millSuperfine ball mill for micro powder
Call
Condition: new, Year of construction: 2026, A superfine ball mill is a type of milling machine that is used to grind materials into very fine particles. This type of ball mill has some distinctive features that make it especially suitable for processing even the hardest materials with low contamination and minimal wear. It is commonly used in various industries, including pharmaceuticals, minerals, pigments, and chemicals, for producing micro powder or nanoparticles.
Here are some key features and considerations for a superfine ball mill for micro powder:
1. High Grinding Efficiency: Superfine ball mills are designed to achieve high grinding efficiency by utilizing grinding media with a relatively small size, leading to a large surface area for grinding.
2. Precision Control: These mills often come with advanced control systems to regulate parameters like rotation speed, temperature, and grinding time, allowing precise control over the particle size distribution.
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3. Specialized Design: The mill is typically designed with features to minimize contamination, such as using materials resistant to wear and corrosion. Some mills also have cooling systems to prevent overheating during the milling process.
4. Variety of Materials: Superfine ball mills can handle a wide range of materials, including both brittle and fibrous substances. They are often used for milling hard materials that require fine grinding, such as ceramics, minerals, or pigments.
5. Size Reduction to Micro or Nano Level: The primary goal of a superfine ball mill is to reduce particle size to the micro or even nano level. This is achieved by the intense grinding action that occurs within the mill.
6. Classifier System: Some superfine ball mills incorporate a classifier system to control the particle size distribution more precisely. This allows for the separation of fine particles from coarser ones during the milling process.
7. Batch or Continuous Operation: Depending on the specific design, these mills can operate in either batch or continuous mode, offering flexibility based on the production requirements.
8. Safety Measures: Safety features may be included, such as monitoring and control systems to prevent overloading, overheating, or other potential issues during operation.
When selecting a superfine ball mill for micro powder production, it's important to consider the specific requirements of your application, the characteristics of the materials you're working with, and the desired final particle size distribution. Always follow the manufacturer's guidelines for operation, maintenance, and safety to ensure optimal performance and longevity of the equipment.
Listing
Zheng Zhou Shi
8,333 km
Powder grinding mill
ball mill for mining &fine powder makingsilica/Barite/limestone powder plant
Call
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.
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
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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
8,333 km
Fine Powder Grinding Plant
Cement mill & Ultrafine Grinding MillFine Powder Grinding Plant
Call
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.
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
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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! 📞

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Listing
Zheng Zhou Shi
8,333 km
Ball Mill for Ore mining & sand grinding
batch ball mill & wet mining ball mill2400X4500 ball mill
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Condition: new, fuel type: electric, Year of construction: 2026, machine/vehicle number: 2700x4500, Equipment: low noise, Main Technical parameters of the ball mill
Drum diameter: 2400mm
Drum length: 4500mm
Motor power: 320KW
Max input size: 25mm
Capacity:35-60 t/h
Weight: 72Tons
Ball loading: 30Tons
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Besides this model, we also have the other models like 2700x4500, 3200x4500, 1830x13000mm, and so on, and we can also offer customerization service, we can also provide complete grinding solution for various industries like cement, quartz, ore beneficiation plant, and so on, welcome to contact us for more info.
A ball mill is a common grinding machine used to grind and blend materials for use in mineral processing, including ore mining and the production of silica (silicon dioxide). When it comes to ore mining and silica grinding, the characteristics of the ore and the final product requirements will play a crucial role in selecting the appropriate ball mill.
Here are some considerations for using a ball mill in ore mining and silica grinding:
1. Ore Characteristics:
- Hardness: The hardness of the ore determines the type of ball mill that is most suitable. Harder ores may require a more robust and wear-resistant ball mill.
- Particle Size Distribution: The initial particle size of the ore affects the grinding process. Different ores may require different approaches to achieve the desired particle size.
2. Silica Grinding:
- Silica Content: If the primary goal is to grind silica, it's important to consider the initial silica content and the desired final particle size. Silica grinding often requires special attention to prevent excessive wear on the milling equipment.
3. Ball Mill Type:
- Overflow vs. Grate Discharge: The type of discharge from the ball mill can impact the final product and the grinding efficiency. Overflow mills are generally used for most grinding applications, while grate discharge mills are more suitable for certain types of ores.
4. Mill Size and Capacity:
- Mill Diameter and Length: The size of the ball mill should be selected based on the amount of material to be ground and the desired throughput.
- Capacity: Ensure that the chosen ball mill has the capacity to handle the required volume of material efficiently.
5. Grinding Media:
- Material and Size: The choice of grinding media (balls or cylpebs) and their size depends on the hardness of the ore and the desired final particle size. Different grinding media materials can impact the purity of silica during grinding.
6. Liners and Lifting Aids:
- Liners: Consider the type of liners used in the ball mill to protect the shell and optimize the grinding process.
- Lifting Aids: Some mills use lifting aids to enhance the grinding action and promote better mixing of the material.
7. Control and Monitoring Systems:
- Automation: Utilize control systems to automate the milling process and ensure optimal performance.
- Monitoring: Regularly monitor the milling process to adjust parameters as needed for consistent and efficient operation.
8. Safety Measures:
- Safety Systems: Implement safety features to protect personnel and equipment during operation.
Always follow the manufacturer's recommendations and guidelines for operation and maintenance to ensure safe and efficient use of the ball mill in ore mining and silica grinding applications.
Listing
Zheng Zhou Shi
8,333 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
8,333 km
Cement mill,clinker grinding plant
Clinker grinding mill / cement ball millcement grinding with air classifier
Call
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:
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- 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.
Technical details
We have different options for different requirements, please contact our team for more info.
Listing
Zheng Zhou Shi
8,333 km
Crushing equipment
Hammer crusher /Hammer milllimestone, coal gangue,concrete crusher
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Condition: new, power: 55 kW (74.78 HP), Year of construction: 2026, A hammer crusher is a machine that uses high-speed rotating hammers to crush and break materials into smaller pieces. It is commonly used in various industries, including mining, cement, construction, metallurgy, and chemical processing. The basic principle of a hammer crusher involves a central rotor with hammers or blades that rotate and impact the material being crushed against a hard surface.
Here are the key features and components of a typical hammer crusher:
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1. Rotor:
- The rotor is a central component of the hammer crusher. It usually consists of a shaft with multiple discs or hammers attached.
- The rotor's rotation causes the hammers to swing outward, impacting the material.
2. Hammers:
- Hammers are the striking or crushing elements attached to the rotor. They can be fixed or pivotally attached.
- The material is crushed as the hammers impact it, generating kinetic energy.
3. Casing or Housing:
- The casing or housing encloses the rotor and hammers, providing structural support and safety.
- It also serves to contain the crushed material and direct it to the desired discharge point.
4. Grate Bars or Screens:
- Positioned at the bottom of the crusher casing, grate bars or screens control the size of the crushed material by allowing smaller particles to pass through while keeping larger ones inside for further crushing.
5. Impact Plate:
- Located near the bottom of the crusher, the impact plate absorbs the impact energy generated by the hammers and prevents excessive wear on the casing.
6. Drive System:
- The hammer crusher is powered by a motor connected to the rotor through a drive belt or coupling.
- The motor provides the necessary power to rotate the rotor, enabling the hammers to crush the material.
7. Adjustable Discharge:
- Some hammer crushers feature an adjustable discharge, allowing users to control the size of the crushed material by adjusting the gap between the impact plate and the hammers.
8. Applications:
- Hammer crushers are used for crushing a variety of materials, including coal, limestone, gypsum, aggregates, and various minerals.
- They are commonly employed in the mining industry for primary and secondary crushing of ore.
- In the cement industry, hammer crushers are used to crush limestone and other materials before they are mixed into the raw meal.
9. Maintenance and Safety:
- Regular maintenance is essential to ensure the efficient operation of a hammer crusher. This includes checking and replacing worn hammers, inspecting the rotor, and lubricating moving parts.
- Safety features, such as access doors and safety guards, are typically incorporated to prevent accidents during operation and maintenance.
Technical Specifications (Typical MINGYUAN Series)
Model Category,Max Feed Size,Capacity (t/h),Motor Power (kW),Rotor Speed (rpm)
Small (PC-400), ≤100mm, 5 – 10, 11, "1,000"
Medium (PC-800),≤200mm, 20 – 50, 55, 750 – 900
Heavy (PC-1200),≤350mm, 80 – 110, 132 – 160, 600 – 750
Heavy Hammer,"≤1,200mm", "500 – 1,000+ ","400 – 1,000" ,Variable
Listing
Zheng Zhou Shi
8,333 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.
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.
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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.
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Germany
821 km
Bed type milling machine
ZayerBF 3
Condition: ready for operation (used), functionality: fully functional, machine/vehicle number: 52335, travel distance X-axis: 3,000 mm, travel distance Y-axis: 1,000 mm, travel distance Z-axis: 1,000 mm, table load: 6,000 kg, controller model: Heidenhain TNC 155, No minimum price – guaranteed sale to the highest bidder!
TECHNICAL DETAILS
Travel range, X-axis: 3,000 mm
Travel range, Y-axis: 1,000 mm
Travel range, Z-axis: 1,000 mm
Table load capacity: 6 t
MACHINE DETAILS
Control system: Heidenhain TNC 155
Apparent power: 45 kVA
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Phases: 3
Voltage: 380 V
Frequency: 50 Hz
Current: 85 A
EQUIPMENT
Manual swivel head, 0.1°
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Germany
1,078 km
Tool milling machine
HERMLEC 600 V
Condition: ready for operation (used), Year of construction: 1997, operating hours: 13,465 h, functionality: fully functional, travel distance X-axis: 600 mm, travel distance Y-axis: 450 mm, travel distance Z-axis: 400 mm, table load: 1,000 kg, controller model: Heidenhain iTNC 430, TECHNICAL DETAILS
Travel range, X-axis: 600 mm
Travel range, Y-axis: 450 mm
Travel range, Z-axis: 400 mm
Table load: max. 1,000 kg
Tool holder: SK 40
MACHINE DETAILS
Control system: Heidenhain iTNC 430
Operating voltage: 400 V
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Control voltage: 24 V
Machine weight: approx. 6,000 kg
Operating hours: 48,690 h
Spindle hours: 13,465 h
EQUIPMENT
Tool holders SK 40
Documentation
Heidenhain programming manual
Machine vise
Clamping jaws
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Hessen
944 km
Milling machine
MügaA600
Condition: ready for operation (used), Year of construction: 2007, functionality: fully functional, machine/vehicle number: G0E 1075, travel distance X-axis: 600 mm, travel distance Y-axis: 400 mm, travel distance Z-axis: 460 mm, spindle speed (max.): 12,000 rpm, controller model: Mitsubishi 64S, No minimum price – guaranteed sale to the highest bidder!
TECHNICAL DETAILS
Travel in X-axis: 600 mm
Travel in Y-axis: 400 mm
Travel in Z-axis: 460 mm
Spindle speed: 12,000 rpm
Tool holder: BT40
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Table size: 700 x 410 mm
Maximum table load: 250 kg
Number of tool magazine slots: 24
MACHINE DETAILS
CNC control: Mitsubishi 64S
Coolant pressure: 20 bar
Dimensions & Weight
Machine dimensions (L x W x H): 1,880 x 3,550 x 2,790 mm
Machine weight: 4,300 kg
Operating hours: The seller estimates the operating hours to be approximately 20,000 hours.
EQUIPMENT
Spindle cooling
Chip conveyor
Extraction system
Electronic handwheel
Renishaw measuring probe
Ethernet interface
Approx. 100 tool holders including cabinet
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Hessen
961 km
CNC engraving and milling machine
LANGRM 400 S/Y
Condition: ready for operation (used), Year of construction: 2012, functionality: fully functional, machine/vehicle number: 1205-H740-00, overall weight: 6,000 kg, travel distance X-axis: 500 mm, travel distance Y-axis: 100 mm, travel distance Z-axis: 50 mm, controller model: ANDRONIC 2060, No minimum price – guaranteed sale to the highest bidder!
Submitting a bid obligates you to collect the item within the specified period, between October 7, 2026, and October 14, 2026!
TECHNICAL DETAILS
Travel range, X-axis: 500 mm
Travel range, Y-axis: 100 mm
Travel range, Z-axis: 50 mm
Travel range, Z-axis: ±50 mm, relative to the central axis of the rotary indexing table / 200 mm
Travel speed, X-axis: max. 30 m/min
Travel speed, Y-axis: max. 20 m/min
Travel speed, Z-axis: max. 30 m/min
Acceleration, X/Y/Z-axis: 10 m/s²
MACHINE DETAILS
Control model: ANDRONIC 2060
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Dimensions & Weight
Dimensions (L x W x H): 2,500 x 1,650 x 2,700 mm
Total weight: 6,000 kg
Operating voltage: 230/400 V
Frequency: 50 Hz
Rated apparent power: 12 kVA
Swivel radius, control panel: approx. 1,050 mm
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Germany
1,148 km
CNC turning and milling center
Mori SeikiNL 2500 SY/700
Condition: used, Year of construction: 2005, turning length: 705 mm, turning diameter: 356 mm, travel distance X-axis: 260 mm, travel distance Z-axis: 795 mm, controller model: MORI SEIKI MSX-850, TECHNICAL DETAILS
Turning diameter: max. 356 mm
Standard turning diameter: 275 mm
Turning length: max. 705 mm
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Travel in X-axis: 260 mm
Travel in Y-axis: ±50 mm
Total travel in Y-axis: approx. 100 mm
Travel in Z-axis: approx. 795 mm
Rapid traverse rate X/Y/Z: 30 m/min
Tool stations: 12
MACHINE DETAILS
Design: SY with Y-axis
Control system: MORI SEIKI MSX-850
Bar feed magazine: LNS Quick Load Servo 2
Bar length: max. approx. 1,500–1,600 mm / 63″
EQUIPMENT
Tailstock
Driven tools
Y-axis
LNS Quick Load Servo 2 bar feed magazine
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Baden-Württemberg
1,177 km
CNC turning and milling center
Mori SeikiNL 2500 SY/1250
Condition: used, Year of construction: 2006, turning length: 1,298 mm, turning diameter: 356 mm, spindle speed (max.): 4,000 rpm, controller model: MORI SEIKI MSX 850III / MAPPS III, center width: 1,250 mm, TECHNICAL DETAILS
Maximum turning diameter: 1,250 mm
Maximum turning length: 1,298 mm
Maximum turning diameter: 356 mm
Standard turning diameter: 275 mm
Swinging diameter over bed: 923 mm
X-axis travel: 260 mm
Z-axis travel: 1,345 mm
Maximum spindle speed: 4,000 rpm
Spindle bore: approx. 80 mm
Number of turrets: 1
Number of tool positions: 12
MACHINE DETAILS
Control system: MORI SEIKI MSX 850III / MAPPS III
Dimensions & Weight
Dimensions (L x W x H): 5,000 × 2,300 × 2,400 mm
Machine weight: 7,600 kg
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EQUIPMENT
IRCO SIMAG loader magazine
Chip conveyor
Powered tools
C-axis
Y-axis
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Netherlands
678 km
Bed type milling machine
CorreaA20-35
Condition: ready for operation (used), Year of construction: 1992, functionality: fully functional, machine/vehicle number: 9220212, travel distance X-axis: 3,200 mm, travel distance Y-axis: 1,000 mm, travel distance Z-axis: 1,000 mm, spindle speed (max.): 2,000 rpm, workpiece weight (max.): 4,000 kg, TECHNICAL DETAILS
X-axis travel: 3,200 mm
Y-axis travel: 1,000 mm
Z-axis travel: 1,000 mm
B-axis rotation: 360°
C-axis rotation: 360°
Spindle speed range: 40 – 2,000 rpm
Tool holder: ISO 50
Main spindle power: 15 kW
Number of axes: 3
Table length: 3,500 mm
Table width: 800 mm
Maximum workpiece weight: 4,000 kg
MACHINE DETAILS
Control system: Conventional
Model: Bed milling machine with traversing table
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Dimensions & Weight
Dimensions (L x W x H): 5,300 x 3,000 x 2,700 mm
Shipping weight: 11,000 kg
Number of shipping packages: 1
EQUIPMENT
Digital display: Sony 3-A
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Netherlands
678 km
Milling machine
Ho ChunHU-1250AH
Condition: ready for operation (used), Year of construction: 2015, functionality: fully functional, machine/vehicle number: 5752, travel distance X-axis: 1,250 mm, travel distance Y-axis: 540 mm, travel distance Z-axis: 520 mm, spindle speed (max.): 2,000 rpm, controller manufacturer: Heidenhain, TECHNICAL DETAILS
Travel range, X-axis: 1,250 mm
Travel range, Y-axis: 540 mm
Travel range, Z-axis: 520 mm
Table length: 1,800 mm
Table width: 400 mm
Tool holder: BT50
Main spindle power: 7.5 kW
Spindle speed: 275–2,000 rpm
MACHINE DETAILS
Control: CNC
Control system: Heidenhain
Number of axes: 3
Connected power: 12 kW
Dimensions & Weight
Dimensions (L × W × H): 2,100 × 2,100 × 2,200 mm
Net weight: 3,600 kg
Number of transport packages: 2
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EQUIPMENT
Tools
Documentation
CE marking
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Nordrhein-Westfalen
809 km
CNC turning and milling center
DMG MoriNLX 2500 | 700
Condition: ready for operation (used), Year of construction: 2020, operating hours: 7,597 h, functionality: fully functional, machine/vehicle number: NL257200651, turning diameter: 366 mm, spindle speed (max.): 4,000 rpm, controller model: Mitsubishi 730UM CELOS, working length: 700 mm, number of slots in tool magazine: 12, TECHNICAL DETAILS
Maximum machining length: approx. 700 mm
Maximum turning diameter: 366 mm
Workpiece length with tailstock: max. 728 mm
Spindle speed: max. 4,000 rpm
Tool turret: 12-position BMT60 star turret
Tool drive: 40 / 14 Nm
Speed of driven tools: max. 10,000 rpm
Overhang length of driven tools: 100 mm
Chuck: 10" hollow chuck, Ø 254 mm
Chuck cylinder: hollow chuck cylinder BB210A821
Tailstock: NC tailstock
Tailstock taper: MK 5
MACHINE DETAILS
Coolant type: water-miscible coolant / emulsion
Coolant pressure: 5 bar
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Extraction connection: Ø 150 mm
Mains voltage: 380 V
Frequency: 50 Hz
Transformer power: 45 kVA
Phases: 3 phases
Isolation transformer: 400 V ± 5 %
Current: 65 A
Control system: Mitsubishi 730UM CELOS
User interface: CELOS with ERGOline touch panel
Machine operating time: 7,597 h
Program runtime: 2,138 h
Last maintenance: April 2024
Weight: 5,800 kg
EQUIPMENT
DMG MORI M730UM control system with CELOS
ERGOline touch panel
12-position BMT60 star turret with driven tools
10" hollow chuck, Ø 254 mm
Hollow chuck cylinder BB210A821
Double foot switch with protective cover
NC tailstock with MK-5 mount
Oil-air cooler for circulating spindle coolant
Hinged belt chip conveyor
High-pressure coolant system, 5 bar
Oil mist separator AFS 1100 including interface
Manual, swiveling tool pre-setter
SCHNEIDER transformer 45 kVA
Technology cycle "Alternating Speed"
Further technical data can be found in the document attached!
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Nordrhein-Westfalen
784 km
Gantry milling machine
FOOKEENDURA 907.2LINEAR
Condition: ready for operation (used), Year of construction: 2005, operating hours: 71,080 h, functionality: fully functional, travel distance X-axis: 5,000 mm, travel distance Y-axis: 3,000 mm, travel distance Z-axis: 1,500 mm, spindle speed (max.): 22,000 rpm, controller model: Siemens SINUMERIK 840D, TECHNICAL DETAILS
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Travel in X-axis: 5,000 mm
Travel in Y-axis: 3,000 mm
Travel in Z-axis: 1,500 mm
Max. workpiece dimensions (L × W × H): 4,000 × 2,000 × 1,000 mm
Table length: 4,050 mm
Table width: 2,050 mm
Table height: 500 mm
Feed rate X-axis: 65 m/min
Feed rate Y-axis: 65 m/min
Feed rate Z-axis: 65 m/min
Rapid traverse rate X-axis: 65 m/min
Rapid traverse rate Y-axis: 65 m/min
Rapid traverse rate Z-axis: 65 m/min
Position of milling head: vertical
Tool interface: HSK 63A
Spindle speed: 22,000 rpm
Spindle power: 30 kW
Torque: 28.6 Nm
Tilting axis A: ±110°
Rotational range C-axis: ±182.5°
Magazine capacity: 20 stations
Max. tool diameter: 100 mm
Max. tool weight: 6 kg
MACHINE DETAILS
Control system: Siemens SINUMERIK 840D
Connected power: 150 kW
Dimensions & Weight
Dimensions (L x W x H): 8,000 x 7,500 x 6,200 mm
Dimensions of control cabinet (L x W x H): 600 x 4,200 x 2,600 mm
Machine weight: approx. 78,000 kg
Operating hours: 71,080 h
EQUIPMENT
Dust extraction hood on the milling head for connection to an on-site dust extraction system
NC4 laser system for contactless tool measurement and tool breakage monitoring
Renishaw RMP60 wireless probe for workpiece measurement
Bellows/roller covers
Listing
United Kingdom
0 km
1 Gal Eiger Model 5L SSE EXD Stainless Steel Bead Mill
EIGER5L H SSE EXD
Call
Condition: used, Used Eiger model 5L SSE EXD stainless steel bead mill. Stainless steel chamber measures approximately 360mm x 200mm diameter. Unit is driven by 10hp, 420volt, 3/50 electric motor. Includes local controls.
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Listing
Airdrie
63 km
CNC turning and milling center
DOOSANPuma 2600L
Call
Condition: used, Year of construction: 2012, functionality: fully functional, machine/vehicle number: ML0107-000373, Doosan PUMA 2600 L
Swing 780mm
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X-Axis 260 mm
Z-Axis 1350 mm
FANUC i Series
Swarf conveyour
Renishaw Toolsetter
Listing
United Kingdom
0 km
CNC Machine Centres With Pod And Rail
SCMACCORD 25 FX
Call
Condition: used, machine/vehicle number: 008507, X axis working area: 5020 mm
Y axis working area: 1380 mm
Working Table: Pod and Rail
Main Electrospindle power: 15 KW
Number of controlled axes: 3 axes
Total number of tool changer positions: 16
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Trust Seal
Dealers certified through Machineseeker

Listing
Sheffield
256 km
Travelling column milling machine
SoraluceFL8000
Call
Condition: excellent (used), Year of construction: 2008, functionality: fully functional, Soraluce model FL8000 high performance travelling column, floor type CNC milling machine
TRAVEL (X) 7,500 mm
TRAVEL (Y) 1,400 mm
TRAVEL (Z) 1,000 mm
RAPID TRAVERSE (X,Y,Z) 25,000 mm/min
WORKING FEED RANGE (X,Y,Z) 1 – 10,000 mm/min
ACCELERATION RATE (Instantaneous not maximum) 1 m/sec2
SPINDLE SPEED 20 - 4,000 Rpm
SPINDLE TAPER ISO 50
SPINDLE POWER 28 Kw
NC15C - HEIDENHAIN iTNC 530 (Flat 15.1" TFT Screen with digital drives). Single processor version. Prepared for a machine of 10 motors (9 CNC axes + spindle motor).
Main push button panel with individually operated push buttons for linear axes (X+, X-, Y+, Y-, Z+, Z-)
K20 option for the i530M.
Independent AC. Heidenhain digital drive servomotor for each axis
HEIDENHAIN HR-410 portable electronic handwheel with 5m spiral cable
Automatic Indexing head 28Kw, 760Nm, 0.001°x 0.001°, 4000 Rpm. Continuous air and oil mist lubrication system for head gears.
Automatic Tool Clamping device – 15,000N. Automatic hydraulic tool releasing device
Spindle taper: BT50
High Torque spindle motor 28kW, 100% ED, digital motor.
R10 – ZF gearbox two speed including cooling unit
Spindle Speed Range 20 – 4,000Rpm
Rapid Feed X-Y-Z axes 25.000mm/min
Working Feed range X-Y-Z axes 0 - 10.000mm/min
Acceleration rate X- Y -Z axes 1 m/s2 (instantaneous, not maximum)
Hydraulic counterbalance system for head/ram assembly
X axis driving system by two servomotors, two gearboxes and a double rack & pinion
Preloaded ballscrews with double recirculating nuts in Y and Z axes. Automatic centralized lubrication system.
Linear Guiding System with recirculating cylindrical rollers in each axis. Automatic centralized lubrication system for the guides.
HEIDENHAIN Linear measuring scales in X-Y-Z axes with compressed air purge system - (Precision +/- 0,005mm)
H48 – Coolant through the spindle type AD.
M3 – Automatic tool changer 40 stations.
M6 – Horizontal-vertical tool changing facility.
M8 – Motorized tool changing device. Tool changer is driven by a servo motor
Hydraulic equipment
Front metallic roller blind cover to both upper and lower ram area, together with metallic protection to the lateral side of the column, between the machine table and the rear guideway support, which protects the vertical movement of the ram.
CE10 - PROTECTION on the back and both lateral sides of the machine column
P20 - Operator's platform fixed to the column and travels together with it in the "X" axis direction. The main operator’s panel is mounted within the operator's platform area for machines without an operator’s pendant and is accessed from the rear of the machine.
D7 + D50A - Coolant system with 1000L capacity tank with two pumps providing high and low pressure providing 5 & 12bar and 50L/min flow rate. Paper and Magnetic filtering.
E30A – swarf conveyor FL8000 Hinge conveyor belt. Width 350mm
PW11B – Pendulum working area system.
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PM2 x 2 – Machine prepared by Soraluce for the inclusion of two rotary tables.
Working area lighting.
Electrical cabinet cooling system
Electrical cabinet lighting
Working methods - According to CE safety regulations
Filter to assure electromagnetic compatibility.
Protection to both sides of the column with security bumpers
Anchoring Bolts
Standard Colour - Blue RAL 5005 / Grey RAL 7035
K19 – Two sets of machine documentation (One hard copy, one on CD ROM)
Floor plate 8,000 x 1,500 x 300mm
Listing
Shildon
141 km
Center lathe
ColchesterMagnum 1250
Call
Condition: used, Colchester Magnum 1250 Gap Bed Centre Lathe.
Distance Between Centres 4000mm (157").
Swing Over Bed 635mm (25").
Swing In Gap 900mm (36").
Spindle Bore 118mm.
Spindle Speeds 6.3 - 1250rpm.
Leadscrew 2 TPI.
Rapid Power to Saddle & Cross Slide.
Quick Change Tool Post & Holders.
3 & 4 Jaw Chucks.
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3 Point Roller Bearing Steady.
Newall DP 700 Digital Readout & Tooling.
Weight Approx: 6000KG
Listing
Burscough
203 km
CNC turning and milling center
MazakNexus 300
Call
Condition: excellent (used), Mazak Quickturn Nexus 300 CNC Lathe
Capacity
Maximum bar size diameter - 77mm
Maximum cutting dia - 420mm
Maximum swing - 680mm
Spindle
Main spindle speed : Max 4,000rpm / Min 35rpm
Main spindle workpiece weight ( including chuck) 450kg
Spindle bore - 88mm
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Spindle centre line - 1080mm
Spinel nose - A2-8
Axis Travel
X axis 225mm
Z axis 680mm
Cutting feedrates (x axis max) 8m/min
(z axis max ) 8m/min
Rapid traverse
X axis (max) 30m/min
Z axis (max) 25m/min
Turret
Toolsize turning tool shank - 25 x 25
Turret indexing time
1/2 full turn 0.8 secs
single step 0.2 secs
No of stations on drum turret 12
Tailstock (not chucker)
Body movement motor driven
Body stroke 645mm
Mounting taper No5
Standard centre supplied No5
Chucking systems
Chuck cylinder S2078-15Y
Chuck Type B210A815X
Jaw stroke on diameter 8.8mm
Main chuck diameter 10"
Mazatrol PC Fusion CNC 640T Nexus CNC Control
Listing
Sheffield
256 km
Travelling Column Milling Machine
SoraluceSP10000
Call
Condition: good (used), Year of construction: 2002, functionality: fully functional, USED Soraluce Soramill Model SP 10000 Travelling Column, Table Type CNC Milling Centre, with Automatic Oil Mist Lubricated Orthogonal Milling Head with 1 X 1 Degree Indexing and HEIDENHAIN TNC 430 M Control System. Year 2002 SN 8647
Table Area - 10000 x 1100 mm
Column Traverse (X) - 8500 mm
Vertical Traverse (Y) - 1600 mm
Ram Traverse (Z) - 1200 mm
Spindle Motor - 28 kW
Spindle Taper - Standard ISO 50 BT50 tooling
Pullstud - DIN 6987 2-Form A. ISO 7388/2-Form A
Independent Gearbox with 2 Ranges
Speed Range - 20 to 4000 RPM
Feed Range - 5 to 5000 mm/min
Rapid traverse rate - (X, Y, Z) 15,000 mm/min
Preloaded double nuts and recirculating ballscrews to each axis.
Linear Guiding System with recirculating cylindrical rollers and steel guideway assemblies in X, Y and Z axes
Independent A.C Drive motor to each axis.
Linear Transducer in X, Y and Z-axes with air purge system.
Automatic tool clamping. Automatic hydraulic tool releasing device.
CNC Control HEIDENHAIN TNC-430-M. (Flat TFT screen with digital drives) 9 axes CNC and 1 spindle, 5 of them simultaneously interpolated.
Working area lighting
Electrical cabinet cooling system
Electrical cabinet lighting
Heidenhain HR410 portable electronic handwheel with 3m spiral cable
Horizontally articulated pendant for CNC control
Orthogonal head 28KW, 800Nm, 1deg x 1 deg, 4000rpm oil lubricated Price includes oil cooling unit for both head and gearbox. Option G2, Ram prepared for 4000rpm, is also included.
Coolant through the spindle type AD.
Coolant system with 500l capacity tank with two pumps providing low and high pressure of 3 and 8 bars and 50l/min flow. The system includes a combined paper and magnetic drum-filtering unit.
Standard operators platform fixed to the column
40 tools capacity toolchanger magazine, BT50
Max. Tool length = 400 mm.
Max. Tool diameter: - With full magazine = 120 mm. With adjacent position empty = 250 mm.
Max. Tool weight = 20 kg.
Mean tool weight with full magazine = 10 kg.
Max. Permitted total weight = 20 kg.
Swarf Conveyor
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Hinge type conveyor belt
Machine preparation for the addition of a 4th axis electro-mechanical table.
Splash Guarding against swarf at the table front and both sides. Consists of four sliding front doors with a height from the floor of 2.100mm and a length of 1.700mm each one. Manually operated opening and closing with mechanical interlock. The doors can be opened for the full longitudinal traverse. The rear of the table is open.
Protection in the back and both lateral sides of the machine column.
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