High Temperature Friction and Wear Testing Machine
Whats/App: +86 156 1874 6768
Web: standard-groups.com
Standards
ASTM G99: Standard Test Method for Wear Testing
ASTM G133: High-Temperature Friction and Wear Test Method
ISO 20808: Solid Material Friction and Wear Test
GB/T 3147: Methods for Determining Friction Material Wear Performance
Technical Specifications
| Parameter | Range / Specification |
|---|---|
| Test Force Loading Range | 0.1–10 N, 10–200 N |
| Maximum Friction Torque | 2.5 Nm |
| Spindle Maximum Speed | 2000 rpm |
| Heating Temperature Range | Room temperature – 1000℃ |
| X-Axis Adjustable Friction Radius | 0–35 mm |
| Z-Axis Adjustable Lift Height | 0–50 mm |
| Test Medium | Dry friction, circulating gases (N₂, CO₂, He, Ar, etc.), oil |
| Time Display & Control | 0–999999 s/min |
| Revolution Display & Control | 0–999999999 r |
| Machine Weight | Approx. 90 kg |
| Power Supply | 220 V, 16 A |
| Power | 1.5 kW |
Features
Dual Friction Modes: Supports ball-on-disk and pin-on-disk testing to meet different experimental requirements
High-Temperature Capability: Adjustable up to 1000℃ for testing high-temperature materials
Multiple Lubrication Options: Dry, oil, or inert gas lubrication (N₂, CO₂, etc.)
High-Precision Control: Accurate temperature control and force measurement ensure reliable testing
Adjustable Friction Radius and Height: Flexible X-axis radius and Z-axis lift height for customized testing
Long-Term Operation: Capable of prolonged high-temperature and high-load tests in demanding environments
Accessories
| Name | Description |
|---|---|
| High-Temperature Furnace | Provides heating from room temperature up to 1000℃ |
| Friction Disks & Balls | For ball-on-disk and pin-on-disk tests |
| Lubricating Oils | Used for oil-lubricated tests |
| Inert Gases (N₂, CO₂, etc.) | Used for gas-lubricated tests |
| Sample Fixtures | Secures the test samples |
| Thermocouples | Measure friction pair temperature during testing |
Testing Principle
The tester simulates friction behavior of samples under normal or elevated temperatures. By applying loads and varying speed, temperature, and lubrication conditions, you can evaluate the friction and wear performance of materials. The ball-on-disk or pin-on-disk contact generates friction, and measurements of friction force and wear allow you to assess material wear resistance and lubrication efficiency.
Operation Instructions
Installation & Inspection: Ensure all connections are secure, power supply is correct, and temperature and friction sensors are calibrated.
Sample Preparation: Prepare friction pair materials and lubricants as required, and secure samples.
Set Parameters: Use the touchscreen to set temperature, load, friction speed, and friction pair material.
Start Test: Confirm settings and start the experiment, monitoring data throughout the process.
Record & Analyze: After testing, save the data and perform analysis to calculate friction and wear performance according to standards.
Experimental Procedure
Set Test Conditions: Choose friction pair, temperature, load, and other parameters according to the test standard.
Prepare Friction Pairs: Install disks and balls/pins, adjusting friction radius and height as required.
Activate Heating System: Set target temperature and allow the system to stabilize.
Begin Testing: Start the experiment, recording friction force, temperature, and wear data.
End Test & Data Recording: After completion, record all data and analyze friction and wear indicators.
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