The MG 80mm-2 is a mast guide bearing with an 80mm inner diameter and 244.8mm outer diameter, designed for heavy-duty applications. Its compact width of 68mm makes it suitable for tight spaces while maintaining strength.
With a dynamic load capacity of 280,000N and static load capacity of 340,000N, it handles significant forces without compromising performance. The 5mm radius ensures smooth operation and reduces stress on surrounding components.
This bearing is built for durability, ideal for use in construction equipment or industrial machinery. Its robust design ensures reliable performance even under demanding conditions.
Weighing just under 7kg, it offers a balance of strength and manageability. Perfect for applications where stability and load-bearing capacity are key.
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Performance Features of MG 80mm‑2 Bearing
MG 80mm‑2 Bearing is built to handle high dynamic loads, with a capacity of 280,000 N for demanding applications.
Its robust design ensures stability, thanks to the 68 mm width of both inner and outer rings.
The bearing’s 5 mm radius enhances durability, reducing stress concentrations during operation.
With a static capacity of 340,000 N, it provides reliable performance even under heavy loads.
MG 80mm‑2 Bearing’s dimensions (80 mm x 244.80 mm x 68 mm) make it suitable for precise industrial use.
Its balanced construction ensures smooth operation and long service life.
Industrial Uses of MG 80mm‑2 Bearing
MG 80mm‑2 Bearing is commonly used in heavy machinery, such as construction equipment and cranes, where its high dynamic capacity handles substantial loads with ease. The robust design ensures longevity even in demanding environments.
In wind turbines, MG 80mm‑2 Bearing plays a key role in supporting the mast, providing stability and reducing friction during rotation. Its precise dimensions make it a reliable choice for renewable energy applications.
For industrial automation, MG 80mm‑2 Bearing is ideal for guiding systems in robotic arms and conveyor belts. The smooth operation and durability help maintain efficiency in high-use settings.
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