Specifications | |
Product name | Ford Explorer 2020 Ceramic Brake Pad |
Model | Explorer 2020 |
Type | Brake Pad |
Material |
Ceramic |
F/R | R |
Factory No. | ZK-10046 |
FMSI | D2232 |
OEM | L1MZ2200C |
Braking System | N |
Size | |
Width | 102.1mm |
Height | 48.2mm |
Thickness | 17mm |
Model_MARKE |
Lincoln Aviator (U611 2019-) |
Maximize Your Ford Explorer’s Performance with Our Advanced Ceramic Brake Pads
Elevate your 2020 Ford Explorer’s braking system with our premium ceramic brake pads. Designed with precision, our pads carry the model code D2232 and OEM part number L1MZ2200C, tailored specifically for the right side of your vehicle.
Key Benefits:
Whether you’re commuting in the city or exploring off-road trails, our ceramic brake pads provide the reliability and performance you need for your Ford Explorer 2020.
Our ceramic brake pads, crafted from a specially formulated ceramic blend, showcase exceptional performance owing to their unique material composition.
The manufacturing process adheres to the rigorous standards of international certification IATF-16949, ensuring the utmost reliability in product quality.
Withstanding temperatures of up to 640°C, our ceramic brake pads offer a reliable safeguard for braking needs under diverse driving conditions.
Employing original high-precision molds and specialized heat treatment techniques, we guarantee the precision and stability of our products.
Addressing brake squeal concerns, our pads boast a friction coefficient of PS 0.35, coupled with heat resistance up to 640°C, maintaining outstanding braking performance even in high-temperature environments. This prolongs lifespan and effectively resolves brake squeal issues.
Prioritizing safety and comfort, our stable friction coefficient preserves brake disc integrity, while the comfortable pedal feel and low-noise design enhance driving pleasure and reduce environmental pollution.
Featuring unique chamfered edges, our pads not only reduce braking noise but also enhance compatibility with counterpart components, further elevating braking performance.
Exceptional heat dissipation performance is achieved through high-temperature and high-pressure burnishing, reducing bedding-in periods and minimizing noise occurrences, thereby enhancing pad cooling efficiency and ensuring braking stability and safety.
Designed for lightweight, our ceramic brake pads, compared to traditional metal ones, effectively reduce vehicle load, improving fuel economy and power performance.
Minimizing brake dust, our ceramic brake pads produce less dust compared to metal counterparts, making them environmentally friendly and less intrusive to the cleanliness of the vehicle surroundings and wheels.
Quality assurance is paramount to us. Through stringent quality controls and continuous research and development efforts, we ensure the stability and reliability of each ceramic brake pad, earning the trust and acclaim of our users.