Product Parameters
|
Products Name |
Rear Brake Rotors And Pads |
|
OEM NO. |
UH74-26-251A 3865373 UH7426251A UH7426251A XM341126BA |
|
Model |
Ford Ranger 2006- |
|
MOQ |
20 PCS |
|
Packing |
1.Neutral package 2.Our brand package 3.Customer brand design |
|
Payment Term |
TT Western union PayPal. Trade Assurance |
|
Delivery Time |
3-7 Business Days |
|
Warranty |
12 Months |
Product Detail


Advantage:
Rear Brake Rotors And Pads are a common braking device that have many performance advantages in vehicle braking.
First, it has greater braking power, allowing it to slow down and stop more efficiently.
Secondly, Rear Brake Rotors And Pads can better consume braking heat, reduce the heat loss of the braking system, and improve braking efficiency.
In addition, because it is a high-temperature resistant material with strong wear resistance and corrosion resistance, it can maintain its braking performance longer, extending its service life and reducing maintenance costs.
In addition, Rear Brake Rotors And Pads also have the advantages of easy installation, operation and maintenance, making the replacement and repair of brake components more convenient and faster. It can also adapt better to harsh road conditions, provide stable braking performance and ensure vehicle safety.
Therefore, Rear Brake Rotors And Pads is a braking device with many advantages, which brings great safety and driving comfort to the vehicle. Its performance advantages are beyond doubt.
High temperature resistant materials:
The high temperature resistant material of Rear Brake Rotors And Pads is a topic worth discussing.
First of all, Rear Brake Rotors And Pads are an important part of the car braking system. When a vehicle is moving, the brakes generate high temperatures to use friction to slow down and stop the vehicle. Parts such as Rear Brake Rotors And Pads need to have good high temperature resistance to withstand the high temperatures generated during vehicle braking.
At present, high temperature resistant materials mainly include metals, ceramics, carbon-carbon composites, etc. Although metal materials have certain high temperature resistance, they are prone to plastic deformation and thermal expansion under extreme high temperatures, making it difficult to meet the accuracy and reliability requirements of brakes. Ceramic materials have higher hardness and wear resistance, but are prone to breakage and have a shorter service life. Carbon-carbon composite materials are ideal high-temperature-resistant materials due to their low thermal expansion coefficient, high tensile strength, good wear resistance, and high stability at high temperatures due to their 3D three-dimensional structure.
In addition to the choice of materials, the preparation process also plays a crucial role in the performance of the brake. When preparing carbon-carbon composite materials, special carbonization and recrystallization processes are required to ensure the stability and uniformity of their macro and micro structures.
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