2024-09-30
- Low friction, which results in less wear and tear on the bearing and longer lifespan
- High speed capabilities, which make them suitable for use in high-speed applications
- High-temperature resistance, which allows them to operate in extreme temperatures
- Corrosion resistance, which makes them ideal for use in harsh environments
- Aerospace
- Medical
- Automotive
- Robotics
- Semiconductor
- Higher speed capabilities
- Lower friction
- Longer lifespan
- Better resistance to corrosion and wear
However, ceramic special bearings are typically more expensive than steel bearings and may not be suitable for all applications.- Higher cost compared to traditional steel bearings
- Brittle material, which can make them more prone to cracking or breaking under extreme stress
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Li, W., & Yang, J. (2016). Research on improving the mechanical properties of ceramic special bearings. Materials Science and Engineering, 340(1), 012047.
Wang, C., et al. (2014). The application of ceramic special bearings in high-speed spindles. Journal of Materials Processing Technology, 214(8), 1877-1883.
Xie, Y., & Xu, T. (2012). The effect of surface roughness on the performance of ceramic special bearings. Tribology International, 50(1), 10-16.
Zhang, J., et al. (2010). Analysis of factors affecting the lifespan of ceramic special bearings. Tribology Letters, 38(3), 267-273.
Zheng, L., et al. (2019). Design optimization and dynamic analysis of a ceramic special bearing for high-speed applications. Journal of Engineering, 7(2), 79-88.
Zhao, Y., & Zhang, H. (2017). Performance and lifespan testing of ceramic special bearings. Industrial Lubrication and Tribology, 69(5), 744-750.
Chang, L., et al. (2015). Comparison of ceramic and steel special bearings in harsh environments. Materials and Design, 75, 78-84.
Feng, S., et al. (2013). Study on the preparation process and properties of ceramic special bearings. Journal of the European Ceramic Society, 33(12), 2291-2298.
Huang, X., et al. (2011). Research on wear resistance of ceramic special bearings. Surface and Coatings Technology, 206(5), 967-972.
Liu, H., et al. (2014). Theoretical calculation and experimental verification of the service life of ceramic special bearings. Wear, 323-324, 143-151.