No products were found matching your selection.
Other Related Products
-

FORMULA NAME:LOW METALLIC (BL-ACV-Z8) FORMULATION PERFORMANCE BL-ACV-Z8 is a cost-effective formula for buses, with stable performance and moderate wear resistance, which can meet the needs of most models and markets. Characteristics: 60-100 thousand KM lifetime. Applicable Car Models: Applicable to the low-end market, buses, long-distance coaches, light trucks PHYSICAL PROPERTIES: Constant Speed Coefficient: 0.4 AK MASTER…
-

Introduction to Truck Brake Shoes Scorched MixtureTruck brake shoes scorched mixtures are a specialized category of brake shoes friction materials designed to withstand extreme thermal stress while maintaining consistent braking performance. This brake shoes formula utilizes a unique scorching process to enhance the bonding of carbonized organic fibers, metallic particles, and ceramic modifiers, resulting in a robust brake shoes mixture ideal…
-

Introduction to Truck Brake Pads with No Brass Mixture No Brass brake pads mixture is an innovative advancement in brake pads friction materials, engineered for heavy-duty trucks to deliver high-performance braking while eliminating brass components for enhanced environmental sustainability. This brake pads formula combines ceramic compounds, aramid fibers, and metallic modifiers, ensuring compliance with global eco-regulations and reducing rotor wear….
-

产品名称NAME:Chopped Glass Fiber 6mm(玻璃纤维) 产品描述PRODUCTION DESCRIPTION: Chopped Strands fiber glass are fiber glass material that used as reinforcement in the thermoplastic such as engineering plastics, thermoserring resins, polyester and phenol resin.Thermoplastics are used a wide range of industries,and is the most ideal choice of the current constructional fibers. 颗粒度GRANULARITY(筛网分析 SIEVE ANALYSIS,颗粒大小PARTICLE SIZE) 长度Length of Fiber…
-

Introduction to Car Brake Shoes with Sintered Ceramic Mixture Sintered ceramic brake shoes mixture is a high-performance brake shoes friction material designed for modern passenger vehicles. It combines ceramic fibers, sintered metallic particles, and advanced binding agents to deliver exceptional braking efficiency while meeting stringent environmental standards. This brake shoes formula eliminates hazardous materials like asbestos and copper, offering a sustainable…
-

Introduction to Car Brake Shoes with HD (High-Density) Ceramic Mixture HD Ceramic brake shoes mixture is a premium innovation in brake shoes friction materials, engineered for passenger vehicles requiring high-performance braking, durability, and environmental sustainability. This brake shoes formula combines high-density ceramic fibers, non-metallic modifiers, and advanced binders to deliver superior friction stability while eliminating harmful materials like asbestos and…
-

Introduction to Truck brake shoes Carbon Fiber MixtureTruck brake shoes carbon fiber mixtures represent a cutting-edge evolution in friction material technology, designed to meet the demands of modern heavy-duty braking systems. These brake shoes friction materials integrate carbon fiber reinforcements with advanced binding agents and ceramic additives, achieving exceptional thermal stability, lightweight performance, and extended service life….
-

The Application of Iron Pyrite Powder in Brake Pads Production In the intricate landscape of brake pads manufacturing, the choice of materials can make or break the braking performance and safety of vehicles. Iron Pyrite Powder, with its distinct physical and chemical properties, has emerged as a potential component in brake pads production, presenting a…
-

Introduction to Truck Brake Pads Metallic MixtureMetallic brake pads mixtures are engineered for heavy-duty truck braking systems, combining high-strength metallic fibers and advanced friction modifiers. These brake pads friction materials prioritize durability, heat resistance, and consistent performance under extreme loads. The brake pads formula integrates steel wool, copper alloys, and graphite in precise brake pads mixes, ensuring optimal braking efficiency while minimizing…