QIBR Thin-Wall Ball Bearings Delivered to a Customer in Cali, Colombia, to Enhance Accuracy and Safety of Medical CT Scanners
- Continent
- Sourth America
- Country
- Columbia
- Date
- 2016-04-30
- Categories
-
Thin-Section Ball Bearing
- Applications
- Medical CT Scanners
Products Used
Thin-section ball bearings
1. Lightweight: The QK13008XP0 thin-wall ball bearing features a very thin radial and axial cross-section, resulting in a more compact overall structure that reduces weight without compromising load capacity. This makes it ideal for achieving efficient rotation and support within the limited space of CT scanners.
2. High Precision and Stability: Manufactured using advanced techniques and high-precision CNC machining, the QK13008XP0 thin-wall ball bearing undergoes strict tolerance control for its inner ring, outer ring, rolling elements, and cage. This ensures that all components meet design specifications, enhancing overall precision.
3. Wear Resistance and Durability : The QK13008XP0 thin-wall ball bearing is made from high-performance materials with high hardness and friction resistance, which minimizes wear caused by friction. The inner and outer surfaces undergo special hardening treatments to significantly increase surface hardness, effectively reducing friction and wear.
Additional Notes:
In the field of medical equipment, the selection of the QK13008XP0 thin-wall ball bearing is crucial for high-precision medical CT scanners. The Colombian customer chose to procure QIBR's QK13008XP0 thin-wall ball bearings to meet their needs for enhanced accuracy and safety. The QK13008XP0 bearing employs high-strength materials and advanced manufacturing processes to ensure excellent stability and low friction characteristics even under high loads and high-speed operations. For medical CT scanners, precision directly affects image quality and diagnostic effectiveness. As a professional manufacturer of the QK13008XP0 thin-wall ball bearing, QIBR is committed to providing optimized lightweight designs that enhance equipment flexibility and mobility.