Brake Pads Shear Strength Test Machine

Precision Shear Force Measurement Capability

  • The Brake Pads Shear Strength Test Machine is specifically designed to quantify the exact shear force required to separate friction linings from their backing plates—an essential metric for assessing the bonding integrity of brake pad assemblies.
  • Crafted by Fu Chun Jiang Master Brake Pad Machine, this equipment combines advanced precision test control technology with intuitive operation, guaranteeing consistent, accurate results for all testing scenarios.

Product Applicability & Standard Compliance

  • Tailored for shear strength testing of friction linings used in both brake pads and brake shoes, covering the full range of passenger car and commercial vehicle (CV) brake pad products.
  • Fully aligned with major international shear testing standards, including ISO6312-81, JIS D4422-90, and SAE J840-82, ensuring compatibility with global quality evaluation protocols.
  • Fu Chun Jiang Master Brake Pad Machine adheres strictly to these industry standards, providing reliable support for both R&D and quality control processes.

Key Technical Performance Metrics

  • Loading Specifications: Vertical positive pressure reaches a maximum of 5.5 KN with adjustable indicators; shear force capacity is 100 KN for passenger car brake pads and 200 KN for CV brake pads, with a maximum loading speed of 6,500±500 N/S.
  • Specimen & Power Parameters: Accommodates brake pads up to 160×80×30 mm and brake drums of R160×100 mm; power rating is 1.5 kW for passenger car models and 2.2 kW for CV models.
  • Physical Dimensions: Measures 1,500×800×1,470 mm and has a total weight of 1,000 kg.

Practical Industry Applications

  • An indispensable testing tool for brake pad manufacturers, suitable for performance verification during the R&D phase and quality control in mass production.
  • Engineered by Fu Chun Jiang Master Brake Pad Machine to meet the rigorous testing demands of the automotive braking industry, ensuring stable and consistent performance during long-term operation.