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工程陶瓷高效深磨温度场的有限元仿真 被引量:11

Finite Element Simulation of the Grinding Temperature Field in High Efficiency Deep Grinding of Engineering Ceramic
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摘要 在磨削温度实验的基础上,运用有限元法对工程陶瓷氧化铝及部分稳定氧化锆进行了高效深磨磨削温度场的仿真研究,得出了干磨及湿磨两种状态下工程陶瓷磨削温度场的分布;并分析了磨削温度梯度对工程陶瓷热裂纹的影响.结果表明:随着砂轮线速度增加,磨削温度场温度梯度增大;而随着磨削深度增大,不同材料的磨削温度梯度变化不同,且磨削温度梯度与磨削热裂纹的产生有一定的对应关系. Based on grinding temperature experiments, the grinding temperature fields in high-efficiency grinding of the two engineering ceramics, Al2O3 and PSZ ZrO2, were simulated by using the finite element method. Based on grinding temperature experiments and heat transfer theory, the grinding heat partition in engineering ceramics was obtained. Both the dry and wet grinding temperature distributions in the workpieces were obtained. The analysis has indicated that the grinding temperature gradients in the temperature fields increase when the wheel speeds increase. However, it has a different trend for the depths of cut in different ceramic materials and has a certain relationship with the grinding heat cracks in the ceramics.
出处 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2009年第7期24-29,共6页 Journal of Hunan University:Natural Sciences
基金 湖南省自然科学基金资助项目(06JJ50088) 教育部留学回国人员科研启动基金资助项目
关键词 磨削 温度 有限元仿真 裂纹 工程陶瓷 grinding temperature finite element simulation crack engineering ceramics
作者简介 郭力(1964-),男,湖南长沙人,湖南大学教授,博士 通讯联系人,E-mail:guolihnu888@163.com
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