Copper-steel composite wear-resistant plate is a high-performance composite material that combines the corrosion resistance of copper and the strength of steel,...
Oil-free bushing is a special bearing that uses oil from the oil groove as lubrication and has the function of self-lubrication. This kind of bearing is loaded ...
Self-lubricating bearings are widely used in the aerospace field, mainly due to their characteristics of self-lubricating and reducing friction loss without the...
Linear motion ball bearings are widely used in various industrial applications, but their performance can be significantly affected by extreme temperatures, whe...
Graphite copper plates are often used as bridge bearing pads due to their excellent wear resistance, self-lubrication and thermal conductivity. In the bearing s...
Self-lubricating bearings have irreplaceable and significant advantages over other bearings in the use of excavators due to their self-lubricating and maintena...
JF bimetallic bearings are a high-performance composite material bearing with low-carbon steel plate as the matrix and copper alloy sintered on the surface as ...
Self-lubricating bushings are designed to operate in environments where traditional lubricated systems might struggle, including areas with high contamination l...
The interference fit of oil-free bearings means that during the installation process of oil-free bearings, the outer diameter is designed to be slightly larger ...
High-strength brass CuZn25Al6Fe3Mn3 is an aluminum brass alloy with a specific chemical composition. The main components include copper (about 57-60%), zinc (a...
The geometry of a self-lubricating bushing plays a critical role in its performance, as it affects how the bushing interacts with the surrounding surfaces, the ...
Generally speaking, self-lubricating bearings can be used for many years or tens of thousands of hours, depending on factors such as the bearing type, working e...
We offer a wide range of oil-free bearing solutions covering all series on the market.