HINO OIL Casted Brake Shoe
Part No. OEM No. Table Width Riveting Holes Application HINO OIL 474311320...
Part No. OEM No. Table Width Riveting Holes Application HINO OIL 474311320...
Part No. OEM No. Table Width Riveting Holes Application HINO 474311540 6.5...
Part No:4656 OEM No: Size:410X160mm Riveting Holes:18 Application:MAN160
Part No. OEM No. Table Width Riveting Holes Application NISSAN AIR 44060-0...
Part No. OEM No. Table Width Riveting Holes Application NISSAN OIL 44060-9...
RENU200 5010098948 419 X200mm 16 RENAULT 5010525775 419 X220mm 16 RENAULT...
Part No:SCA127 OEM No:1104542 Size:413x127mm Riveting Holes:8 Application:SCANIA
Part No:SCA178 OEM No:1104543 Size:413x178mm Riveting Holes:16 Application:SCANI...
Part No:SCA254 OEM No:1104545 Size:413x254mm Riveting Holes:16 Application:SCANI...
Part No:VL200 OEM No:1137701 Size:410x200mm Riveting Holes:21 Application:VOLVO ...
Part No:VL225 OEM No:VL83/84 Size:410x225mm Riveting Holes:21 Application:VOLVO ...
ZHEJIANG BANGCHI AUTO PARTS CO.,LTD IS AN EXPERT IN AUTO PARTS MANUFACTURING INDUSTRY
ZHEJIANG BANGCHI AUTO PARTS CO.,LTD IS AN EXPERT IN AUTO PARTS MANUFACTURING INDUSTRY
Understanding the distinct behaviors of brake shoe and brake lining is critical for heavy-duty vehicle maintenance. Zhejiang Bangchi Auto Parts Co., Ltd., founded in spring 2016, leverages over 20 years of team expertise in brake products. As a specialist in R&D, manufacturing, and sales of heavy duty brake shoes & lined shoes, Bangchi operates a production line with a capacity of 2 million brake shoes and exceeds an annual turnover of 100 million RMB, ensuring data-driven insights into these components.
| Parameter | Brake Lining | Brake Shoe |
|---|---|---|
| Primary Material | Friction composites (semi-metallic, ceramic, organic) | Steel (SPHC, SPCC, or advanced high-strength steel) |
| Typical Wear Indicator | Thickness reduction rate: 0.5-1.2 mm per 10,000 km (heavy duty) | Deformation (warpage < 0.5 mm acceptable); no direct thickness wear |
| Replacement Cycle | 30,000 – 70,000 km | 150,000 – 200,000 km (or every 2-3 lining replacements) |
| Common Failure Threshold | Lining thickness ≤ 6 mm or friction material cracks visible | Web crack length > 10 mm or rust covering > 15% of surface area |
| Heat Tolerance (max operating temp) | 350°C – 450°C (beyond leads to fade) | 600°C+ (structural integrity maintained, but expansion risk) |
With strict management under IATF 16949 quality system, Zhejiang Bangchi Auto Parts Co., Ltd. ensures that their brake lining and brake shoe products meet these performance benchmarks, minimizing unplanned failures for OEM and aftermarket customers.
Axle load distribution is a critical factor in heavy-duty vehicle dynamics. Uneven weight distribution forces certain brakes to work harder, leading to premature wear, heat buildup, and reduced braking efficiency. Zhejiang Bangchi Auto Parts Co., Ltd., founded in spring 2016, brings over 20 years of team expertise in brake products. As a specialist in R&D, manufacturing, and sales of heavy duty brake shoes & lined shoes, Bangchi operates a production line with a capacity of 2 million brake shoes and exceeds an annual turnover of 100 million RMB, ensuring precision-engineered solutions that account for real-world load conditions.
| Parameter | Balanced Load Distribution (±10% per axle) |
Unbalanced Load Distribution (>25% variance on one axle) |
|---|---|---|
| Lining Wear Rate (mm/10,000 km) | 0.5 – 0.7 mm | 1.2 – 1.8 mm |
| Brake Shoe Lifespan | 150,000 – 200,000 km | 70,000 – 90,000 km |
| Brake Lining Replacement Cycle | 50,000 – 80,000 km | 20,000 – 35,000 km |
| Peak Operating Temperature | 320°C – 380°C | 450°C – 550°C |
| Risk of Brake Fade | Low (under 5% occurrence) | High (over 30% occurrence) |
| Thermal Cracking Probability | Rare | Common on overloaded axle |
With strategic cooperation with many well-known domestic and overseas manufacturers and OEM customers, Zhejiang Bangchi Auto Parts Co., Ltd. emphasizes that their heavy duty brake kit components are tested to perform optimally under correct load distribution. However, ignoring axle load balance will dramatically reduce both lifespan and efficiency.