Brake Pads Shear Strength Test Machine


Core Testing Capability & Brand Craftsmanship
- Accurately measures the shear force required to separate friction linings from their backing plates—an essential metric for evaluating the bonding integrity of brake pad assemblies.
- Developed by Fu Chun Jiang Brake Pads Machine, this test equipment combines advanced precision control technology with intuitive operation, delivering consistent, accurate and reliable results even under prolonged operation.
- Serves as a critical tool for validating the structural stability of brake pad bonds, directly facilitating product safety and performance assessments in automotive applications.
Test Scope & International Standard Alignment
- Specialized in shear strength testing of friction linings for both brake pads and brake shoes, covering passenger car and commercial vehicle (CV) product lines.
- Fully complies with major international testing standards, including ISO6312-81, JIS D4422-90 and SAE J840-82, meeting global quality verification requirements.
- Fu Chun Jiang Brake Pads Machine adheres strictly to these international benchmarks, making the equipment suitable for R&D and quality control processes across global markets.
Key Technical Specifications
- Loading Performance: Maximum vertical positive pressure of 5.5 KN with adjustable pointer; shear force capacity up to 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 Details: 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: Overall size of 1,500×800×1,470 mm and a total weight of 1,000 kg.
Practical Application Scenarios
- Ideal for brake pad manufacturers, supporting performance verification during R&D and strict quality control in mass production.
- Engineered by Fu Chun Jiang Brake Pads Machine to meet the rigorous testing demands of the automotive braking industry, ensuring stable and consistent performance during long-term continuous operation.
