Used Chiron Mill 2000 Highspeed for sale (16,114)
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Listing
Tata
1,725 km
Pneumatic press
HYUNDAE HP-20002ton
Call
Condition: like new (used), Year of construction: 2018, functionality: fully functional, pressing force: 2 t, table width: 330 mm, table length: 350 mm, throat depth: 100 mm, air pressure: 6 bar, cylinder diameter: 28 mm, For sale in new condition HYUNDAE HP-2000 2t PNEUMATIC PRESS
Brand: HYUNDAE MACHINERY & ELECTRIC CO.,LTD
Type: HP-2000
manufacturing of year: 2021
Max. pressing force: 2t
open height:300mm
Bolster Size: 350x330mm
Stroke length: 100mm
Cylinder diameter: 28mm
built on a press stand
Two-handed operation
Voltage: 110V
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Air Connecting Hose Diameter:12mm
Listing
Balgheim
1,168 km
Vertical machining center
CHIRONFZ 08 S
Call
Condition: used, Year of construction: 2002, functionality: fully functional, machine/vehicle number: 213-65, Verfahrweg X-Achse: 300 mm
Verfahrweg Y-Achse: 250 mm
Verfahrweg Z-Achse: 250 mm
Werkstückgewicht (max.):1 kg
Anzahl der Werkzeugplätze:12 Pos
Steuerungshersteller:Fanuc
Steuerungsmodell: 21m 3x / 2x 21iM
Kühlmittelzufuhr:1 bar
Anzahl der Spindeln:1
Eilgang Z-Achse: 60 m/min
Eilgang X-Achse: 40 m/min
Eilgang Y-Achse: 40 m/min
Drehzahl (max.): 10.000 U/min
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Werkstückdurchmesser (max.): 63 mm
4.Achse Peiseler AWU P100
die Maschinen wurden 2016 durch Chiron CMS überholt
Ausstattung: Dokumentation/Handbuch, Drehzahl stufenlos einstellbar
Die Maschine befindet sich unserer Einschätzung nach in einem guten gebrauchten
Zustand und kann nach Terminvereinbarung unter Strom besichtigt werden.
Listing
Gussago
1,449 km
Chiron FZ18W
ChironFZ18W
Call
Condition: used, Chiron FZ18W Magnum
rotopallet
1999
CNC Siemens 840D
X 630 Y 400 Z 425
tables (2) 850x450mm
20 tools
ISO 40 / 18kW / 140 Nm
40m/min
HAWE hydraulics
automatic doors
swarf conveyor
6 ton
3,6 x 2,25 x 2,85
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machine can be inspected under power in our warehouse
Mimu Machine Tools (Italy)

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Listing
Tata
1,725 km
Automatic A frame dispensing system
KNAPP SDA 2000auto picker system
Call
Condition: like new (used), Year of construction: 2019, Automatic A frame dispensing system, picker
The KNAPP SDA system is a modern automatic channel picking solution for high-speed products. It is ideal for drugstores, cosmetics, FMCG and pharmaceutical logistics environments, where fast and error-free order preparation is key.
The products are stored in gravity channels.
When an order is placed, the system automatically dispenses the required number of pieces, which are placed on a conveyor belt or in a collection box.
Number of sections: 24 (of which 1 section is a tube dispenser)
24 channels in each section
Total: 552 channels + 15 tube dispenser channels (for 60 products per channel)
The system can be expanded to double the above quantities.
Main advantages:
Automatic product release
Fast picking
Accurate inventory management
Continuous operation
High throughput
Minimal human error potential
Ideal application areas
Drugstore logistics
Pharmaceutical wholesale
Cosmetic warehouses
FMCG distribution centers
E-commerce fulfillment
Technological background
The system:
uses intelligent channel management,
operates with PLC control,
supported by WMS/KiSoft integration,
provides real-time inventory monitoring.
Operator functions
The SDA user interface allows:
channel status monitoring,
test discarding,
error diagnostics,
fast maintenance intervention.
Why KNAPP SDA?
The SDA system is one of the most modern solutions for fast and efficient picking, which supports continuous, scalable logistics operations.
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Listing
Regenstauf
1,265 km
Vertical machining center
CHIRONFZ 18 L
Call
Condition: repair required (used), Year of construction: 2001, functionality: limited functionality, travel distance X-axis: 2,000 mm, travel distance Y-axis: 450 mm, nominal power (apparent): 37 kVA, controller manufacturer: Sinumerik 840 D, overall weight: 7,000 kg, spindle speed (min.): 10,000 rpm, Equipment: chip conveyor, - SK 40 tool holder
- The machine is currently idle.
- The buffer battery is empty, which has caused the connection to the PLC to be interrupted.
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The machine can be inspected under power at any time.
Listing
Lipie
1,552 km
CHIRON FZ 15S Heidenhain 4 axis
CHIRONFZ 15 S
Call
Condition: excellent (used), Year of construction: 2002, CHIRON FZ 15S with 4 axis in Perfect Condition
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Machine can be inspected any time under power
Listing
Iași
2,323 km
Vertical machining center
CHIRONFZ 15K S FA
Call
Condition: repair required (used), Year of construction: 2007, functionality: not functional, machine/vehicle number: 191-89, Technical characteristics:
- Machining workspace: X 550 mm; Y 400 mm; Z 360 mm
- Axis configuration: 3 linear axes (X, Y, Z) + 1 rotary table axis A and 2 rotary divider head axes B, equipped with direct angular measuring system, max rotation speed 50 rpm, accuracy +/- 5"
- Axis A swivel range: +/- 110°
- Max. clamping/part dimensions: Ø 247 x 830 mm; max. weight 360 kg
- Rapid traverse rate: X/Y/Z 40/40/40 m/min
- Distance between divider heads B1/B2: 250 mm
- Spindle speed: 1–10,000 rpm
- Spindle interface: DIN69893-HSK-A63 (with internal coolant supply)
- Automatic tool changer: 1x48 positions / chip-to-chip average 2.5 sec
- Max. tool diameter: 82 mm / max. tool length: 250 mm / max. tool weight: 5 kg
Electrical specifications:
- Supply voltage: 3x400V/50Hz
- Installed power: approx. 45 kVA / 80A
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Dimensions:
- Installation space: approx. 4.4 x 2.3 x 3.1 m
- Weight: approx. 8,500 kg
Equipment includes:
- CNC control: Siemens 840D Power Line
- Chip conveyor: Spring Knoll
- Oil cooling system
- High-pressure oil filtration system (max. 80 bar): Knoll HL 450/1200
- Shaft cooling system, guideways and control cabinet
- 2 oil lubrication units
- Oil mist extraction/recovery: LTA
- Fire protection: Kraft & Bauer
- Part presence P/Y detection: with low-pressure air sensors
- In-process inspection: Marposs T25
- Tool holder presence detection in spindle
- Documentation: incomplete
Machine status:
NOT OPERATIONAL: Hydraulic power unit motor burned out.
Listing
Iași
2,323 km
Vertical machining center
CHIRONFZ 15K S FA
Call
Condition: repair required (used), Year of construction: 2009, functionality: not functional, machine/vehicle number: 281-06, Technical Specifications:
# Machining Workspace: X 550 mm; Y 400 mm; Z 360 mm
# Axis Description: 3 linear axes (X, Y, Z) + 1 rotary axis (rotary table A) and 2 rotary axes (B, indexer head)
with direct angular measuring system, maximum 50 rpm, accuracy +/- 5 seconds
# A axis swivel: +/-110˚
# Max. clamping/part dimensions: Ø 247 x 830 mm; max. weight 360 kg
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# Rapid traverse rate: X/Y/Z 40/40/40 m/min
# Distance between divider heads B1/B2: 250 mm
# Spindle speed: 1–10,000 rpm
# Spindle taper: DIN69893-HSK-A63 (with internal coolant)
# Automatic tool changer: 1x48 tools / chip-to-chip time approx. 2.5 sec
# Max tool diameter: Ø82 mm / max. length 250 mm / 5 kg
Electrical connection:
# Voltage: 3x400V/50Hz
# Installed power: approx. 45 kVA / 80A
Dimensions:
# Installation area: approx. 4.4 x 2.3 x 3.1 m
# Weight: approx. 8,500 kg
Equipment includes:
# CNC control: Siemens 840D Powerline
# Chip conveyor: Spring Knoll
# Oil cooling system
# High-pressure oil filtration system, max. 80 bar: Knoll HL 450/1200
# Shaft, guideways, and electrical cabinet cooling system
# 2 oil lubrication systems
# Oil mist extraction/recovery: LTA AC3002
# Fire protection: Kraft & Bauer
# Presence detection: with low pressure air sensors (part present)
# In-process control: Marposs T25
# Tool breakage monitoring: Blum Novotech
# Tool presence detection system in spindle
# Documentation: incomplete
Machine condition:
NOT OPERATIONAL
# Cover for tool magazine
# Tool magazine presence sensor (BERU)
Listing
Iași
2,323 km
Vertical machining center
CHIRONFZ 15K S
Call
Condition: repair required (used), Year of construction: 2007, functionality: not functional, machine/vehicle number: 191-88, Technical specifications:
# Working area: X 550 mm; Y 400 mm; Z 360 mm
# Axis configuration: 3 linear axes (X, Y, Z) + 1 rotary table axis A and 2 rotary axes B with indexing head, direct angular measuring system, max. speed 50 rpm, accuracy +/- 5"
# A-axis swivel: +/-110˚
# Max. clamping/part size: Ø247 x 830 mm; max. weight 360 kg
# Rapid traverse rate: X/Y/Z 40/40/40 m/min
# Distance between dividing heads B1/B2: 250 mm
# Spindle speed: 1-10,000 rpm
# Spindle interface: DIN69893-HSK-A63 (with internal coolant supply)
# Automatic tool changer: 1x48 tools, tool-to-tool average 2.5 sec
# Max. tool diameter: Ø82 mm / max. tool length: 250 mm / max. tool weight: 5 kg
Electrical system:
# Voltage: 3x400V/50Hz
# Installed power: approx. 45 kVA / 80A
Dimensions:
# Installation footprint: approx. 4.4 x 2.3 x 3.1 m
# Weight: approx. 8,500 kg
Equipment includes:
# CNC control: Siemens 840D Power Line
# Chip conveyor: Spring Knoll
# Oil cooling unit
# Oil filtration system up to 80 bar: Knoll HL 450/1200
# Shaft, linear guide and electrical cabinet cooling system
# 2 oil lubrication systems
# Oil mist extraction/recovery unit: LTA AC3002
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# Fire suppression: Kraft & Bauer
# Part presence check with low-pressure air sensors
# In-process control: Marposs T25
# Tool support monitoring system at spindle
# Documentation: incomplete
Machine condition:
NOT OPERATIONAL
# Operator protection screen damaged – operator panel functional
# Tool magazine chain
# Ballbar X
# Ballbar Y
# Pullbar spindle
# Axis drive power supply X
# Axis drive power supply Y
# Main drive power supply
# Complete hydraulic unit defective
Listing
Iași
2,323 km
Vertical machining center
CHIRONFZ 15K S FA
Call
Condition: repair required (used), Year of construction: 2009, functionality: not functional, machine/vehicle number: 281-09, Technical Characteristics:
# Machining Workspace: X 550 mm; Y 400 mm; Z 360 mm
# Axis Description: 3 linear axes (X, Y, Z) + rotary table axis A and 2 rotary axes B, equipped with an index divider head
with direct angular measuring system, max. rotation speed 50 min⁻¹, accuracy +/- 5"
# Axis A swivel: +/-110˚
# Max. clamping/part dimensions: Ø 247 x 830 mm; max. weight 360 kg
# Rapid traverse: X/Y/Z 40/40/40 m/min
# Distance between divider heads B1/B2: 250 mm
# Spindle speed: 1-10,000 rpm
# Spindle interface: DIN69893-HSK-A63 (with internal coolant supply)
# Automatic tool changer: 1x48 tools / chip-to-chip time approx. 2.5 sec
# Max. tool diameter: Ø 82 mm / max. length 250 mm / max. weight 5 kg
Electrical Connection:
# Voltage: 3x400V/50Hz
# Total installed power: approx. 45 kVA / 80A
Dimensions:
# Installation footprint: approx. 4.4 x 2.3 x 3.1 m
# Weight: approx. 8,500 kg
Equipment Includes:
# CNC control: Siemens 840D Power Line
# Chip extractor: Spring Knoll
# Oil cooling system
# High-pressure oil filtration system, up to 80 Bar: Knoll HL 450/1200
# Cooling system for spindle, linear guides, and control cabinet
# 2 independent oil lubrication systems
# Oil vapor extraction/recovery system: LTA AC3002
# Fire suppression system: Kraft & Bauer
# Part presence detection: with low-pressure air sensors
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# In-process measurement: Marposs T25
# Tool breakage detection: Blum Novotech
# Tool holder detection system in spindle
# Documentation: incomplete
Machine Condition:
NOT OPERATIONAL
# Hydraulic oil leakage at Peiseler rotary table
# New hydraulic pump available in stock
Listing
Mažeikiai
1,604 km
Machining center
CHIRONFZ 15 W baseline-Korbwechsler
Call
Condition: good (used), Year of construction: 2006, Spindle 12000 TR:MN
CN SIEMENS SINUMERIK 258-38.
Number of hours on the counter: 85 642 hours
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total machine power 30 KVA
stroke X 300 mm, stroke Y 400 mm, stroke Z 425 mm
spindle speed 12000 rpm
travel speed 60m/min
tool attachment SA40
2 UNITS AVAILABLE
Auction
Auction ended
Tirol
1,346 km
Double spindle machining center
CHIRONDZ 15 W
Year of construction: 2006, operating hours: 82,068 h, condition: good (used), functionality: fully functional, machine/vehicle number: 258-22, Moving column machine in steel-concrete composite construction with workpiece changing device. Low-maintenance model from the world-renowned manufacturer CHIRON.
Double spindle - vertical - machining center incl. chip conveyor KNOLL AE 1058.009 and a compound unit (already dismantled).
Prescribed maintenance intervals for plant and plant parts have always been observed.
TECHNICAL DETAILS
Drilling capacity in steel: 60: 2 x 6 36 mm (with insert drill)
Guides: with long term grease lubrication
speed range: 20-12.000 rpm
CNC control: SIEMENS 840D
spindle distance in X-axis: 250 mm
X-axis: 300 mm
Y-axis: 400 mm
Z-axis: 425 mm (with variable tool change plane)
rapid traverse speed 60 m/min in X-, Y- and Z-axis
Main spindle drive: 1 piece with 2 AC motors
power at 100 % ED: 9,5 kW
power at 15 % ED:14,0 kW
Drive: digital direct drives with indirect absolute path measuring system (no reference point approach)
tool places: 212
Tool diameter: max. 65 mm
Tool diameter with free neighboring places: max. 175 mm
Tool weight: max. 2.5 kg (5.0 kg at 2 stations)
Tool change time: approx. 0.9 s (depending on control)
Chip-to-chip time: approx. 2.1 s (control-dependent)
Workpiece changing device: 0 / 180
Tool holder: HSK A 63 1
MACHINE DETAILS
type of current: 3 / N / PE - 50/60 Hz
operating voltage: 400 V
power: 44 kVA
rated current: 63 A
Coolant system HL 450 / 900
LATE CONVEYOR
Manufacturer: KNOLL
Type: AE 1058.009
Year of manufacture: 2006
EQUIPMENT
- CHIRON maintenance manual on screen
- Operating hours and piece counter
- Socket 230 V
- Socket for portable mini handwheel
- Control cabinet cooler as door-mounted unit
- Signal lamp
- splash guard cladding
- chip conveyor
- mini control panel
- Rinsing gun
- Central pneumatic connection
- Fixture flushing
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- 70 bar HP pump
- 1 internal cooling package with suction unit
- Fully enclosed working chamber
- Extraction unit with air cleaner
- Extraction capacity 800 m³/h
- CHIRON mold life monitoring with:
- Automatic loading door of the splash guard
- "opening" and "closing", actuation via two-hand start release
- Integrated IWW 0/180° workpiece changing device
- Chiron Lasercontrol Single F500
- Ethernet connection RJ45 at the control cabinet instead of in the control panel
- Pneumatic and hydraulic connections
- Central hydraulic and pneumatic connection prepared for max. 20 connections, 6 connections are designed including connection couplings, 4 of them for hydraulics, max. 210 bar and 2 for uncontrolled pneumatics.
- 4 Additional hydraulic connection(s)
- Hydraulic power unit
- 2 Hydraulic aggregate extension for further clamping circuits
Listing
Águeda
1,688 km
Single Head Wire Drawing Machine
MILLTV-100
Call
Condition: good (used), Single Head Capstan Block Wire Drawing Machine
Maximum Inlet Wire's Diameter: 30 mm
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Listing
Stary Sącz
1,744 km
Depositor machine for extruded cookies and muffins
MaxDrop 2000AL 200
Call
Condition: used, Year of construction: 2008, The MAXDROP type machine is used for the production of various pastry products such as muffins, shortcrust biscuits, meringue cookies, sponge cakes, and others.
Brand: MaxDrop 2000
Model: AL 200
Head width: 600 mm
Recipe memory: up to 90 recipes
Machine dimensions: 1100 x 1400 x 1375 mm
Year of manufacture: 2008
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Power supply: 400 V
Installed power: 1.64 kW
Weight: 400 kg
Condition: used
Original technical documentation + CE declaration.
Listing
Miskolc
1,845 km
Machining center
CHIRONDZ 18.2 KW HS
Call
Condition: excellent (used), CHIRON DZ 18.2 KW,
YOM 2012
Control: Fanuc 31i
Path: X / Y / Z 630 x 520 x 400 mm,
Pallet changer 2x 940 x 470 mm,
2 spindles
Spindle distance 320 mm,
2×32-fold tool changer
SK40 tool
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Max. Spindle rotation 10,000 rpm
Listing
Jelah
1,928 km
FLAT GRINDING MACHINE
Minini 2000613A
Call
Condition: good (used), Year of construction: 1997, Max. sanding length 1,400 mm
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Max. sanding width 610 mm
Max. sanding height 550 mm
Max. longitudinal stroke 1,480 mm
Max. cross stroke 560 mm
Infinitely variable table speed 1 - 30 m/min
Grinding wheel size 406 x 51 x 172 mm
Max. table load 1,800 kg
Total power supply 20 kW
Machine weight approx. 6,500 kg
Listing
Mizil
2,396 km
Vertical machining center
HAITIAN - HISION - MAX MILLMAXMILL NVM1166 - HISION VMU1100 -V180
Call
Condition: repair required (used), Year of construction: 2019, functionality: fully functional, In operational condition: MAXMILL NVM1166 - HISION VMU1100 - HISION V180
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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.
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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.
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
Zheng Zhou Shi
8,333 km
Crushing equipment
Mingyuan Dry and Wet Ball MillCustomerizable Model for ball mill plant
Call
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
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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
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.
Listing
Zheng Zhou Shi
8,333 km
Crushing equipment
Hammer crusher /Hammer milllimestone, coal gangue,concrete crusher
Call
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:
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:
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- 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
Mill / grinding mill
Batch Ball Mill, Silica grinding millQuartz ball mill, silica powder grinding
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Year of construction: 2026, condition: new, ceramic ball mill ,Batch ball mill ,also called ceramic ball mill ,it is used for fine grinding of feldspar,quartz,clay,ore and so on.The ceramic ball mill is mainly used for material mixing, grinding,uniform product fineness,and saving power.It can be dry or wet.The machine can use different liner types according to production needs to meet different needs.The fineness of the grinding operation is controlled by the grinding time
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ceramic ball mill Working principle
when ball mill working,steel balls inside drum will rotate with the drum to some height,and then steel balls fall down with materials to reach the point of grinding.
Working Principle of Ceramic ball mill
ceramic ball mill ,Intermittent ball mill grinding operation is finished in the cylinder body. When the cylinder rotates, materials ascend to a certain height and then fall along a certain path due to the balls' gravity. Two forces are generated on the balls inside. One is the force on balls through tangent direction; the other is a opposite force in the contrast to the diameter of balls, as a result of the force generated when the balls slide down. These two forces will constitute a couple for the steel balls. The balls are squeezed between the cylinder and the adjacent steel balls, so the couple can make unequal-sized friction force. The balls will orbit along with the cylinder axis and then fall down, which can produce a strong impact force on the ores in the cylinder body and, as a result, the ores will be crushed. In conclusion, the ores in the cylinder body are mainly crushed by composite effect of peeling force, impact force and extrusion force.
Ceramic ball mill also named Intermittent ball mill which adopts the wet intermittent operation, is used for fine grinding and mixing the material such as feldspar, quartz, clay ceramic raw materials. The discharging and the mud size can through through 1000 sieve pore. This machine is high milling machinery, materials should be Broken in the fineness of the state into the grinding mill to get the highest efficiency and economic benefits.
The cement mill is key equipment for the grinding process of the cement clinker after the crushing process of it. It is mainly used in the cement silicate product industry. After long term design and manufacture of the cement mill, our company now has series of cement mill with various specifications to meet with different requirement from our customers.
Features of Cement Mill
Our company adopts suitable transmission methods according to different specifications. We have brim drive and center drive as transmission form. The cylinder adopts new type step lining to increase the grinding area. And it is easily repairable and changeable. The new designed separate-chambered structure adopts flexible lifting blade and fixed lifting blade and it is easily fixed and repaired.
Technical Details
We have different models and options for different requirements, please contact us for more info.
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Listing
Zheng Zhou Shi
8,333 km
Glass grinding machine
Henan Mingyuan Ceramic /Silica Ball MillBatch ball mill for glass ceramic making
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Condition: new, Year of construction: 2026, power: 7.5 kW (10.20 HP), Batch ball mills find applications in various industries where the processing of materials in discrete batches is required. The versatility of batch ball mills makes them suitable for a range of applications. Here are some common batch ball mill applications:
1. Ceramics Industry:
- *Glaze Preparation:* Batch ball mills are extensively used in the ceramics industry for preparing glazes. Raw materials such as feldspar, quartz, and clay are ground with ceramic balls to achieve the desired particle size for glaze formulation.
2. Chemical Industry:
- *Material Grinding:* Batch ball mills are used for grinding and blending various chemical materials. This includes the production of pigments, dyes, and other specialty chemicals where precise particle size control is crucial.
3. Pharmaceuticals:
- *Drug Formulation:* In pharmaceutical manufacturing, batch ball mills are used for grinding and blending powders to create drug formulations. The controlled environment provided by these mills is essential for maintaining the integrity of pharmaceutical compounds.
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4. Food Industry:
- *Ingredient Mixing:* Batch ball mills may find application in the food industry for mixing and grinding ingredients. This can include the production of food additives, flavorings, and other powdered or granular products.
5. Mining and Minerals Processing:
- *Ore Grinding:* Batch ball mills are used in mining and minerals processing for grinding minerals and ores. The controlled grinding helps in obtaining the desired particle size for subsequent processes, such as mineral separation or extraction.
6. Paints and Coatings:
- *Pigment Dispersion:* In the paints and coatings industry, batch ball mills are employed for dispersing pigments into paint formulations. Achieving a uniform particle size is crucial for the quality and appearance of the final coating.
7. Building Materials:
- *Raw Material Grinding:* Batch ball mills are used in the preparation of raw materials for the production of building materials, such as cement and concrete. Grinding of materials like limestone and clay helps in obtaining the desired fineness for subsequent processes.
8. Electronic Materials:
- *Ceramic Powder Processing:* In the electronics industry, batch ball mills can be employed for processing ceramic powders used in the production of electronic components and insulating materials.
9. Research and Development:
- *Material Testing:* Batch ball mills are often used in research and development laboratories for testing and optimizing material formulations. They provide a controlled environment for small-scale processing and experimentation.
10. Customized Applications:
- *Specialized Processes:* Batch ball mills can be adapted for various specialized processes in different industries where precise grinding and mixing are required. Custom modifications can be made based on specific application requirements.
When using a batch ball mill, it's important to consider factors such as the type of material being processed, desired particle size, and the specific requirements of the end product. Additionally, following the manufacturer's guidelines and maintaining proper operating conditions are essential for efficient and effective milling processes.
Technical details
We have different options for different requirements, please contact our team for more info.
Listing
Zheng Zhou Shi
8,333 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.
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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
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.
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.
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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
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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