QIBR Tapered Roller Bearings and Thin-Wall Ball Bearings Delivered to a Client in Toronto, Canada, for Enhancing the Precision and Speed of Medical Turbochargers

Logo
Continent
North America
Country
Canada
Date
2016-09-14
Categories
Tapered Roller Bearing
Thin-Section Ball Bearing
Applications
Medical Turbochargers

Products Used

QKB045AR0

QKB045AR0

32309B

32309B

Tapered Roller Bearings

1. High load - bearing capacityThe 32309B tapered roller bearing is designed to handle substantial radial and axial loads. Its tapered inner and outer ring raceways converge at a single point along the bearing axis, enhancing load-bearing capacity. This ensures stability in high-pressure and high-speed operation conditions for the turbocharger.

2. Excellent Rigidity: Made from high-performance materials and precision manufacturing processes, the 32309B tapered roller bearing maintains excellent shape and dimensional stability under heavy loads. It minimizes uneven loading caused by deformation, improves overall rigidity, and resists deformation, ensuring stable operation.


Thin-Section Ball Bearing

1. Lightweight Design: The QKB045AR0 thin-wall ball bearing features a thin-section design, reducing overall weight to enhance the flexibility and mobility of the medical turbocharger.

2. High-Speed Performance: The QKB045AR0 thin-wall ball bearing supports high-speed operation, ensuring optimal performance during use and improving treatment efficiency.

3. Low Friction: With a low friction coefficient, the QKB045AR0 thin-wall ball bearing minimizes energy loss during operation, enhancing overall efficiency.


Additional Notes:

A client in Canada procured QIBR’s 32309B tapered roller bearings and QKB045AR0 thin-wall ball bearings to meet the requirements of improved precision and speed for medical turbochargers. QIBR bearings excel in high-speed, high-load precision applications due to their exceptional accuracy and durability, ensuring stable operation over extended periods. The 32309B and QKB045AR0 bearings are manufactured with high-precision machining techniques and strict quality control standards, reducing friction and vibration to improve the efficiency and reliability of medical turbochargers.

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