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Multi-Function Friction and Wear Tester

Multi-Function Friction and Wear Tester is a highly configurable tribological testing system designed for comprehensive evaluation of friction and wear behavior of materials. The system offers an extra-large working space, an ultra-wide load range, and the capability to integrate an in-situ 3D optical surface profiler. With interchangeable test modules and optional environmental chambers, it supports tribological testing from nano to macro scales under controlled temperature, humidity, pressure, or vacuum conditions. The instrument is widely used across aerospace, automotive, biomaterials, coatings, optics, polymers, semiconductors, and related research fields.

Application

The system is suitable for tribological performance evaluation in a wide range of testing scenarios, including but not limited to:

Friction and wear characterization of metallic materials, ceramics, polymers, coatings, and composites

Lubrication performance assessment of lubricating oils and greases

Wear mechanism analysis of bearings, gears, seals, and functional coatings

Tribological simulation of biomedical components such as artificial joints and dental materials

Surface damage, scratch resistance, and micro-motion wear studies

Supported test configurations include ball-on-disk, pin-on-disk rotation, reciprocating ring-on-block, fretting, scratch testing, and other modular test modes.

Standards

The Multi-Function Friction and Wear Tester is designed to support test methods referenced in the following standards:

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

ISO 20808 (Fine ceramics — Determination of friction and wear characteristics of monolithic ceramics by ball-on-disk method)

GB/T 3142 (Determination of load-carrying capacity of lubricants — Four-ball method)

SH/T 0189 (Test method for anti-wear properties of lubricating oils — Four-ball method)

Parameters

ItemDescription
Z-axis Drive System High-precision multi-Z-axis system for accurate loading; supports in-situ 3D surface profiling and Raman spectroscopy integration
Platform Design Open-architecture platform providing a large and flexible working area
Interchangeable Test Modules Replaceable lower test modules enabling multiple test modes (rotation, reciprocation, ring-block, fretting, scratch); automatic module recognition
Environmental Control Temperature: −120 °C to 1200 °C; Humidity: 5–95 % RH; Pressure: up to 200 psi; Vacuum: down to 10⁻⁷ torr
Force Sensors Interchangeable sensors from mN to 12.000 N (capacitive, piezoelectric, strain-gauge types)
In-situ 3D Profiling Automatic imaging with nanometer-level resolution; four optical modes: confocal, white-light interferometry, dark-field, bright-field
XY Positioning Stage Travel range 130 mm × 270 mm for precise positioning between friction testing and surface scanning locations
Data Acquisition & Motion Control High-speed, low-noise controller with fast feedback; data sampling rate up to 200 kHz
Z-axis Travel 150 mm

Features

Supports standard tribological configurations such as ball-on-disk, pin-on-disk rotation, high-speed reciprocating ring-on-block, and scratch testing

Wide loading range from mN to 12.000 N, covering nano, micro, and macro tribology

Integrated in-situ 3D optical surface measurement capability

Closed-loop servo loading control for high test stability and repeatability

Broad environmental simulation capability from cryogenic to high-temperature conditions

Modular test design with fast module replacement

Suitable for tribological studies of coatings, lubricants, material surfaces, and functional components

Fully automated XY positioning stage (130 mm × 270 mm) with 150 mm Z-axis travel


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