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Use of actively cooled and activated coolant for surface quality improvement in ductile material grinding

机译:使用主动冷却和活化的冷却剂来改善韧性材料磨削的表面质量

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摘要

An active cooling and activation approach for coolant during ductile material grinding is proposed and examined. The aim is to enhance the surface quality of the workpiece being machined by the grinding process. Problems in the existing cooling approaches, such as activation, cryogenic cooling and chilled air-cooling, are discussed. Experimental and computational studies of the effects of actively cooled and activated coolant for ductile material grinding were conducted. Experimental results show that the proposed approach is able to improve the surface quality by up to 36.68% on average in terms of surface roughness R_a. In addition, it was found that surface roughness could be reduced if the coolant temperature is reduced. The results of the X-Ray Diffraction (XRD) tests show that the proposed method could, in general, produce low residual stress values. Further studies of this topic are necessary. Results of optical and Scanning Electron Microscope (SEM) examinations also confirmed that the proposed approach is advantageous.
机译:提出并研究了韧性材料磨削过程中冷却剂的主动冷却和活化方法。目的是提高通过研磨工艺加工的工件的表面质量。讨论了现有冷却方法中的问题,例如活化,低温冷却和冷空气冷却。进行了主动冷却和活化冷却剂对延性材料磨削效果的实验和计算研究。实验结果表明,所提出的方法在表面粗糙度R_a方面平均可以提高36.68%的表面质量。另外,发现如果降低冷却剂温度可以降低表面粗糙度。 X射线衍射(XRD)测试的结果表明,所提出的方法通常可以产生较低的残余应力值。有必要对该主题进行进一步研究。光学和扫描电子显微镜(SEM)检查的结果也证实了所提出的方法是有利的。

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