The MG 5208 VFFQX mast guide bearing is a sturdy unit with a 40mm inner diameter and 127.3mm outer diameter, designed for heavy-duty applications. It supports dynamic loads up to 62,120 N and static loads up to 55,530 N, making it reliable under pressure.
With an inner ring width of 30.16mm and outer ring width of 42.9mm, it offers a balanced design for smooth operation. The 8.5mm radius ensures easy installation and reduces stress on the bearing.
Weighing 3.2659kg, it’s built to last while maintaining a manageable size. Ideal for use in construction equipment or industrial machinery where precision and durability are key.
Its robust construction and high load capacity make it a practical choice for demanding environments. Suitable for replacements or upgrades in existing systems.
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Performance Features of MG 5208 VFFQX Bearing
MG 5208 VFFQX Bearing is built with precise dimensions of 40.000 mm x 127.30 mm x 42.900 mm, ensuring a perfect fit for various applications.
The dynamic capacity of 62,120 N allows it to handle significant loads with ease.
Its static capacity of 55,530 N ensures stability even under heavy-duty conditions.
The bearing’s weight of 3.2659 kg makes it sturdy yet manageable for installation.
Industrial Uses of MG 5208 VFFQX Bearing
MG 5208 VFFQX Bearing is commonly used in heavy machinery, such as cranes and construction equipment, where its high dynamic capacity handles significant radial loads. The robust design ensures longevity even in demanding environments.
In automotive applications, MG 5208 VFFQX Bearing supports components like steering systems and drivetrains, providing reliable performance under constant stress. Its precise dimensions make it a versatile fit for various vehicle models.
For automation systems, MG 5208 VFFQX Bearing is ideal for robotic arms and conveyor belts, offering smooth movement and low maintenance. The stainless steel construction adds durability, making it suitable for high-use scenarios.
In wind turbines, MG 5208 VFFQX Bearing plays a key role in rotor assemblies, where its static capacity ensures stability under varying loads. The weight distribution also contributes to efficient energy conversion.
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