In many industrial and mechanical applications, the need for reliable, low-maintenance components is constant. Among these components, oil-free bearings, also k...
I. Structural and Design Features Flanged (Stop-Collar) Design Flanged copper bushings are equipped with a flange structure at the end, which restricts axial ...
Mining machinery operates in demanding environments with high levels of dust, heavy impact loads, and exposure to corrosive substances. Traditional bearings oft...
Graphite bronze plates are widely used in various industrial applications requiring low friction, wear resistance, and reliable operation under heavy loads or h...
Construction machinery operates in extreme environments characterized by high impact loads, heavy dust, and wet, muddy conditions. Traditional bearings frequent...
Metallurgical machinery operates under extreme conditions of high temperature, heavy loads, and severe dust contamination. Traditional lubricated bearings frequ...
The Bronze-Based Solid Inlaid Self-Lubricating Spherical Bearing offers several distinct tribological advantages over conventional lubricated bearings, particul...
Hydraulic machinery operates under harsh conditions involving prolonged water immersion, sediment scouring, and intermittent heavy loads. Traditional bearings o...
As critical components for connecting pipelines and equipment, Shoulder Bushing Flange Graphite Inlaid Self-Lubricating Bearings directly impact sealing perform...
The copper powder layer in the MXB-DUF SF-1F oil-free composite bearing is an essential intermediate layer that serves multiple key functions, primarily enhanci...
As a core component of modern precision transmission systems, linear bearings hold a pivotal position in automated equipment, precision instruments, and high-sp...
As a high-performance self-lubricating bearing component, flanged graphite bronze bushings offer significant advantages in mechanical transmission, heavy-duty e...
We offer a wide range of oil-free bearing solutions covering all series on the market.