Graphite-inlaid copper alloy guide rails (such as copper-based inlaid graphite self-lubricating guide rails, high-strength brass inlaid graphite copper guide ra...
Graphite copper sleeves are sliding bearings with graphite embedded as lubricant on a copper alloy matrix. They have self-lubricating properties and do not requ...
Graphite copper sleeves generally have high temperature resistance and a wide temperature range. Specifically, graphite copper sleeves can remain stable in high...
Improving load distribution and wear resistance in guide rails used in multi-axis or multi-directional systems requires a thoughtful approach that considers the...
In industrial production, especially under high-temperature and harsh conditions, traditional metal bearings often struggle to meet the demand for long-term sta...
In the vast realm of the chemical industry, the safe and stable operation of equipment is of paramount importance. Faced with complex and ever-changing chemical...
In the field of underwater equipment, finding a bearing material that can operate stably for long periods while possessing good lubrication performance and corr...
Self-lubricating copper plates have gained widespread recognition and application across numerous industries due to their excellent self-lubricating properties,...
When selecting copper alloy bushings, multiple factors need to be considered to ensure that the chosen product meets the specific application requirements. Belo...
1. Reduction in Lubricant Usage and WasteLess Lubricant Consumption: Self-lubricating bushings do not require external lubricants, such as oils or greases, whic...
In the drilling and oil & gas industries, the Kelly Bushing, as a specialized bearing or bushing, plays a crucial role. It not only ensures smooth and effic...
High-strength brass has demonstrated outstanding material advantages in the manufacturing of self-lubricating bearings, significantly enhancing bearing performa...
We offer a wide range of oil-free bearing solutions covering all series on the market.