The 2219 KM/P63 is a self-aligning ball bearing with a 95mm tapered bore and 170mm outer diameter, crafted from sturdy chrome steel. It manages radial loads up to 18720 lbf and operates smoothly at speeds up to 5000 RPM.
Its double-row design and brass cage provide reliable performance, while the open seal allows for easy lubrication. The bearing works efficiently in temperatures ranging from -30°C to 110°C.
This model is interchangeable with SKF bearings, making it a practical choice for replacements. Suitable for applications like conveyor systems or industrial fans where misalignment might occur.
Weighing 3.9kg, it’s a robust option for heavy-duty use. Compliant with RoHS and REACH standards for safe and eco-friendly operation.
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How Is 2219 KM/P63 Bearing Engineered for Reliability?
2219 KM/P63 Bearing features a double-row design with chrome steel rings and balls, ensuring strong radial load capacity.
Its dynamic radial load reaches 18,720 lbf, making it suitable for heavy-duty applications.
The brass cage maintains ball alignment, reducing friction and extending operational life.
With a maximum speed of 5,000 rpm, it offers reliable performance in various industrial settings.
Industrial Uses of 2219 KM/P63 Bearing
The 2219 KM/P63 Bearing is commonly used in heavy machinery like conveyor systems and industrial fans, where its self-aligning feature compensates for minor misalignments. Its double-row design ensures stability under radial loads, making it suitable for continuous operation.
In automotive applications, 2219 KM/P63 Bearing fits well in gearboxes and drivetrains, handling high radial forces with ease. The brass cage reduces friction, enhancing performance in high-speed scenarios.
For automation equipment, 2219 KM/P63 Bearing supports robotic arms and assembly lines, where precision and durability are key. The chrome steel construction ensures long service life even in demanding conditions.
Medical devices like MRI machines benefit from 2219 KM/P63 Bearing’s smooth operation and reliability. Its open design allows for easy lubrication, maintaining performance in critical healthcare environments.
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