PIN ON DISC WEAR TESTING MACHINE

Technical Specifications (Typical)

  • Test Type: Dry / Lubricated sliding wear test

  • Principle: Pin-on-disc tribological method

  • Disc Diameter: 100–165 mm (customizable)

  • Disc Material: Hardened alloy steel (or as required)

  • Speed Range: 100 – 2000 RPM (variable)

  • Load Range: 5 N to 200 N (dead weight or lever loading system)

  • Wear Track Radius: Adjustable

  • Friction Force Measurement: Strain gauge / load cell based

  • Coefficient of Friction Display: Digital real-time display

  • Wear Measurement: Linear displacement sensor / LVDT

  • Motor: Variable speed DC / AC motor with controller

  • Data Display: Digital display / Computerized interface (optional)

  • Data Output: USB / Software-based data logging (optional)

  • Power Supply: 220–240V AC, 50 Hz

  • Safety Features: Guard cover, overload protection

  • Standards Compliance: ASTM G99 / ISO 7148 (or equivalent)

Description

The Pin on Disc Wear Testing Machine is a precision laboratory instrument designed to evaluate the wear and friction characteristics of materials under dry or lubricated sliding conditions. The machine measures the wear rate, coefficient of friction, and frictional force between a stationary pin specimen and a rotating disc under controlled load and speed conditions. It is widely used in research laboratories, quality control departments, and material testing facilities for studying tribological behavior of metals, polymers, composites, and coatings.

The system provides accurate, repeatable results with digital monitoring and user-friendly controls, making it ideal for both academic research and industrial material evaluation.

Key Features

  • High precision friction and wear measurement

  • Variable speed control

  • Adjustable load and track radius

  • Real-time coefficient of friction monitoring

  • Digital or computerized data acquisition

  • Rugged and stable frame construction

  • Easy specimen mounting

  • Suitable for R&D and quality testing

  • Low vibration operation

  • Repeatable and accurate results


Applications

  • Tribology studies

  • Material wear testing

  • Coating evaluation

  • Lubricant performance testing

  • Polymer and composite wear analysis

  • Metal surface treatment comparison

  • Academic and industrial research

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