At Annat, we define Brake Pads Chopped Glass Fiber 6mm as a precision-engineered reinforcing component, specifically designed to elevate the performance and durability of Brake Pads Mixture for automotive and industrial applications. This fiber—cut to an exact 6mm length—serves as a critical structural enhancer, addressing the core challenges of brake pad operation: extreme heat, friction, and mechanical stress.

Brake Pads Chopped Glass Fiber 6mm

Brake Pads Chopped Glass Fiber 6mm

From a technical standpoint, Annat’s Brake Pads Chopped Glass Fiber 6mm stands out with industry-leading specs: it features a tensile strength of 3200-3500 MPa, a modulus of elasticity of 70-75 GPa, and can withstand continuous temperatures up to 290°C (with short-term resistance to 320°C)—key for enduring the 200-300°C heat generated during heavy braking. When incorporated into Brake Pads Formula at an optimal 10-13% weight ratio, it delivers three game-changing advantages:

Brake Linings Chopped Glass Fiber 6mm

Brake Linings Chopped Glass Fiber 6mm

1. Extended Wear Life: Reduces brake pad wear rate by 18-22% compared to 4mm chopped fibers, pushing service intervals to 35,000-45,000 km for passenger cars—equivalent to 2-3 more years of use for average drivers.

2. Consistent Friction Performance: Maintains a stable friction coefficient of 0.38-0.46 (tested per ISO 6310), eliminating “brake fade” (a common issue with weaker fibers) and ensuring reliable stopping power even during downhill or high-speed braking.

3. Improved Structural Integrity: Boosts the brake pad’s flexural strength by 28% and impact resistance by 20%, preventing cracking, chipping, or deformation under repeated pressure—critical for avoiding premature pad failure and ensuring driver safety.

Car Brake Pads Low Metallic Formula

Car Brake Pads Low Metallic Formula

For Annat, this 6mm chopped glass fiber isn’t just a material; it’s a commitment to engineering solutions that meet global automotive standards (including OEM requirements for durability and performance). It bridges the gap between strength and practicality, helping our clients create brake pads that stand up to real-world demands.

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