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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Material removal rate for nanocomposite ceramics in ultrasound-aided electrolytic in process dressing
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Material removal rate for nanocomposite ceramics in ultrasound-aided electrolytic in process dressing

机译:纳米复合陶瓷在工艺敷料中超声波辅助电解中的纳米复合陶瓷的材料去除率

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摘要

Nanocomposite ceramics possess beneficial mechanical and physical characteristics over traditional engineering ceramics; however, there is currently no effective method of machining nanocomposites ceramics. This paper proposes a new ultrasound-aided electrolytic in-process dressing machining method. There are many factors influencing the material removal rate in the ultrasound-aided electrolytic in-process dressing grinding. In order to optimize the processing parameters and guide practice, the material removal models are developed to simulate the material removal process based on ductile failure and brittle rupture models, and the influence of grinding parameters on material removal rates is obtained. With the model, the influence of grinding parameters on the material removal rate is analyzed by MATLAB. The analysis results are verified by the ultrasound-aided electrolytic in-process dressing grinding test: the material removal rate increases with the increase of grinding parameters; depth of cut significantly improves material removal rate, followed by axial feeding speed, wheel speed, and workpiece speed that are less important; considering the comprehensive processing effect, depth of cut is the key parameter with the optimal setting at about 3.73 mu m. The ultrasound-aided electrolytic in-process dressing grinding test not only proves the reliability of the model, but also proves that the ultrasound-aided electrolytic in-process dressing grinding can improve the ductile machining effect, when compared to electrolytic in-process dressing grinding, which is suitable for mirror machining of the nanocomposite materials.
机译:纳米复合陶瓷具有在传统工程陶瓷上具有有益的机械和物理特性;但是,目前没有有效的加工纳米复合材料陶瓷的方法。本文提出了一种新的超声波辅助电解工艺敷料加工方法。有许多因素影响超声波辅助电解于工艺敷料研磨中的材料去除率。为了优化处理参数和指导实践,开发了材料去除模型以模拟基于延性故障和脆性破裂模型的材料去除过程,并且获得了研磨参数对材料去除速率的影响。通过该模型,MATLAB分析研磨参数对材料去除率的影响。通过超声波辅助电解于工艺敷料研磨试验验证分析结果:材料去除率随着研磨参数的增加而增加;切割深度显着提高了材料去除率,随后是轴向馈送速度,车轮速度和工件速度不太重要;考虑到综合处理效果,切割深度是具有约3.73μm的最佳设置的关键参数。超声波辅助电解于工艺中的敷料研磨测试不仅证明了该模型的可靠性,还证明了超声波辅助电解于工艺敷料研磨可以提高延展性加工效果,与电解于电解过程敷料研磨相比,适用于纳米复合材料的镜面加工。

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