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Vertical Universal Friction and Wear Testing Machine

Whats/App: +86 156 1874 6768

Web: standard-groups.com

The Vertical Universal Friction and Wear Testing Machine is a high-performance tribological testing instrument designed to simulate friction behaviors under various working conditions. By adjusting parameters such as temperature, load, speed, and friction pair materials, it can perform friction and wear tests for rolling, sliding, and combined rolling-sliding movements. The machine is suitable for evaluating lubricants, metals, coatings, rubber, ceramics, and other materials. It is widely used in tribological research in industries such as petrochemical, machinery, energy, metallurgy, and aerospace.

Application

(1) Research and development in tribology and material sciences.

(2) Friction and wear testing of lubricants, metals, coatings, rubber, ceramics, and other materials.

(3) Simulation of rolling, sliding, and combined rolling-sliding friction types.

(4) Tribological research and new material development in petrochemical, mechanical, energy, metallurgical, and aerospace industries.

Standards

GB 3960-2016: Test Method for Sliding Wear of Plastics

GB/T 8681-2000: Test Method for Metal Tribology

GB/T 2907-2008: Test Method for Rubber Friction and Wear

GB/T 14492-2008: Technical Requirements for Sliding Friction Testing Machines

ISO 7148-1: Metallic Materials – Test Method for Sliding Wear (Pin-on-Disc Method)

ISO 20808: Solid Materials – Test Method for Sliding Wear

ISO 4649: Rubber, Vulcanized or Thermoplastic – Determination of Abrasion Resistance

ASTM G99: Standard Test Method for Wear Testing with a Pin-on-Disk Apparatus

ASTM G133: Standard Test Method for Linearly Reciprocating Ball-on-Flat Sliding Wear

ASTM D3702: Standard Test Method for Wear Testing of Elastomeric Materials (Pin-on-Disk)

DIN 50324-1: Tribology – Testing of Friction and Wear – Pin/Disc Method

DIN 50324-2: Tribology – Testing of Friction and Wear – Block/Ring Method

Technical Parameters

ParameterTechnical Specification
Axial Load Range 10–1000 N
Axial Load Relative Error ±1%
Long-Term Load Stability (30 min) ±1% FS
Maximum Friction Torque 2500 N·mm
Friction Torque Relative Error ±2%
Friction Arm Length 50 mm
Main Motor Type Servo Motor
Motor Maximum Torque 5 N·m
Spindle Speed 1–2000 r/min (stepless adjustable)
Spindle Speed Error ≤100 r/min: ±1 r/min; >100 r/min: ±5 r/min
Test Medium Air, Oil, Water, Slurry, Abrasive
Heater Temperature Range Ambient–260℃
Temperature Control Accuracy ±2℃
Stop Control Method Manual/Automatic (time, revolutions, torque, etc.)

Features

Multi-functional testing: Supports rolling, sliding, and combined rolling-sliding friction modes.

High-precision loading system: Adjustable axial load ensures accurate friction control.

Wide applicability: Suitable for testing lubricants, metals, coatings, rubber, ceramics, and other materials.

High-temperature testing capability: Maximum temperature up to 260℃.

Servo motor drive: Ensures smooth operation for high-speed and high-load friction tests.

Precise control: Supports manual/automatic control of time, revolutions, and friction torque, allowing flexible experiment settings.


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