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Thermal and technological aspects of double face grinding of Al2O3 ceramic materials

机译:Al2O3陶瓷材料双面研磨的热和技术方面

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Double face grinding with planetary kinematics is a process to manufacture workpieces with plan parallel functional surfaces, such as bearing rings or sealing shims. In order to increase the economic efficiency of this process, it has to be advanced permanently. The temperature in the contact zone of most grinding processes has a huge influence on the process efficiency and the workpiece qualities. In contrast to most grinding processes these influences are unknown in double face grinding with planetary kinematics. The application of standard measuring equipment is only possible with high effort due to the inaccessibility of the working space during the machining process. Furthermore, measurement of the workpieces temperature in the considered machining system is not reported. Due to that fact, the intensive cooling has so far been the only method to avoid the occurrence of thermal defects especially in case of brittle ceramic materials. The influence of the mean cutting speed, the tools' cutting performance and the coolant flow on the temperature change of the workpieces made of Al2O3 ceramic materials was investigated with the use of a newly developed method. The first empirical approach to predict the change in temperature of the ceramic workpieces while processing is proposed. The developed measuring method can be used for obtaining experimental temperature data in other processes, such as polishing and lapping for which only theoretical models exist.
机译:用行星运动学进行双面磨削是制造具有平面功能表面的工件的过程,例如轴承环或密封垫片。为了提高这个过程的经济效率,必须永久推进。大多数研磨过程的接触区的温度对工艺效率和工件质量产生了巨大影响。与大多数研磨过程相比,这些影响在双面磨削中未知,与行星运动学进行双面磨削。由于在加工过程期间工作空间的不可避免,标准测量设备的应用才能高效。此外,没有报道考虑加工系统中的工件温度的测量。由于这个事实,到目前为止,密集的冷却是避免出现热缺陷的唯一方法,特别是在脆性陶瓷材料的情况下。采用新开发的方法研究了平均切削速度,工具切割性能和冷却剂流量对由Al2O3陶瓷材料制成的工件温度变化的影响。提出加工时预测陶瓷工件温度变化的第一种经验方法。开发的测量方法可用于在其他过程中获得实验温度数据,例如抛光和研磨,其仅存在理论模型。

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