The LMC BH 2216 is a premium double-row self-aligning ball bearing engineered for demanding industrial applications requiring exceptional operational flexibility. Its inherent design allows the outer ring raceway to accommodate angular misalignment of the shaft relative to the housing, making it ideal for machinery where shaft deflection or mounting errors are unavoidable. This robust bearing features an optimized internal geometry and a standard cylindrical bore (80mm) to ensure superior performance under combined radial and light axial loads. With a high dynamic load rating of approximately 90 kN, the BH 2216 provides sustained reliability and extended service intervals even in high-speed operations up to 4,800 rpm (grease lubrication).
Designed for ease of installation and reduced maintenance costs, the LMC BH 2216 bearing significantly minimizes friction and heat generation, resulting in enhanced energy efficiency across the system. Its exceptional capacity to handle misalignment ensures smooth operation in critical systems such as continuous conveyors, textile machinery, large industrial fans, and pulp processing equipment. Trust the LMC standard for superior dimensional consistency and longevity, providing a cost-effective solution for improving the uptime and efficiency of your heavy industrial assets.
Key Features
Automatic compensation for static and dynamic misalignment (up to 2.5 degrees)
High Dynamic Load Rating (Cr = 90.0 kN) suitable for heavy industrial machinery
Double-row design ensures balanced load distribution and increased radial rigidity
Optimized cage structure for reduced friction and lower operating temperatures
Ideal for applications prone to shaft deflection or mounting inaccuracies (e.g., long shafts, conveyors)
Standard C3 internal clearance provides optimal running conditions under thermal expansion
Technical Specifications
d
80 mm (Bore Diameter)
D
140 mm (Outer Diameter)
B
33 mm (Width)
Bearing_Type
Self-Aligning Ball Bearing
Internal_Clearance
C3 Standard (Optimized for temperature variations)