首页> 外文会议>2nd International Conference on Tribology in Environmental Design 2003 Sep 8-10, 2003 Bournemouth University, UK >Rolling wear of silicon nitride bearing material in a simulated refrigerant environment using a novel pressurized chamber
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Rolling wear of silicon nitride bearing material in a simulated refrigerant environment using a novel pressurized chamber

机译:使用新型加压室在模拟制冷剂环境中氮化硅轴承材料的滚动磨损

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The core emphasis behind this research was to analyse the erosion wear of rolling hybrid ceramic (Si_3N_4) bearing material in Hydrocarbon (HC), Hydrofluorocarbon (HFC) and simulated refrigerant (petroleum ether and kerosene oil) environments. A novel pressurised chamber was designed to achieve a liquid state of the refrigerant as fluid for the rolling contact fatigue experiments. Design of the pressurised chamber is described in this paper. A cooling system was used to control the temperature and pressure of the pressurised chamber. The High Speed four ball Rotary Plint Tribometer was used for rolling contact fatigue tests. This paper presents an experimental study of the influence of the HC (R600a) and HFC (R134a) environment on rolling wear of the silicon nitride/steel elements. Rolling fatigue test methods were used to measure the wear performance of silicon nitride/steel bearing materials. Light microscopy was used to examine the material surface before carrying the tests. Light microscopy was employed for surface examination during and after tests. Wear of rolling Si_3N_4 was measured in R600a and R134a refrigerants. Failure modes and rolling wear performance for these ceramic materials in both environments were compared. Investigations of lubricated contact of Si_3N_4 reveal that wear rate is affected by the environments. Schematic drawings of these wear processes and experimental results are presented in this paper.
机译:这项研究的核心重点是分析滚动混合陶瓷(Si_3N_4)轴承材料在碳氢化合物(HC),氢氟碳化合物(HFC)和模拟制冷剂(石油醚和煤油)环境中的腐蚀磨损。设计了一种新型的加压室,以实现制冷剂的液态作为滚动接触疲劳实验的流体。本文介绍了加压室的设计。使用冷却系统来控制加压室的温度和压力。高速四球旋转夹板摩擦计用于滚动接触疲劳测试。本文介绍了HC(R600a)和HFC(R134a)环境对氮化硅/钢元素滚动磨损影响的实验研究。滚动疲劳测试方法用于测量氮化硅/钢轴承材料的磨损性能。在进行测试之前,使用光学显微镜检查材料表面。在测试期间和之后,将光学显微镜用于表面检查。在R600a和R134a制冷剂中测量了滚动Si_3N_4的磨损。比较了两种环境下这些陶瓷材料的失效模式和滚动磨损性能。 Si_3N_4润滑接触的研究表明,磨损率受环境影响。本文介绍了这些磨损过程的示意图和实验结果。

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