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Effects of Actively Cooled Coolant for Grinding Ductile Materials

机译:主动冷却冷却剂对球磨材料的磨削效果

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摘要

An active cooling approach for coolant during ductile material grinding is proposed and examined. The aim is to enhance surface quality and to enhance productivity. The problem associated with the cryogenic cooling approach and the one with the chilled air approach are addressed. An active cooling prototype was developed utilizing a compact heat pump design, which is easy to use, movable, and can be easily fitted into different type of machine designs with relatively low costs. The system is based on the use of forced convection of the heat generated during the machining process. Experimental and computational studies of the effects of actively cooled coolant for grinding ductile materials are carried out. The experimental results show that the use of actively cooled coolant is able to improve surface quality by up to 29.95% on average in terms of surface roughness Ra. Computational testing results show that the heat can be taken away more effectively by using the proposed approach. The results of optical and 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方法。目的是提高表面质量并提高生产率。解决了与低温冷却方法有关的问题以及与冷空气方法有关的问题。主动冷却原型是利用紧凑的热泵设计开发的,该设计易于使用,可移动,并且可以以较低的成本轻松地安装到不同类型的机器设计中。该系统基于对机械加工过程中产生的热量的强制对流。进行了主动冷却的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,就表面粗糙度Ra而言,使用主动冷却的冷却剂能够平均将表面质量提高29.95%。计算测试结果表明,使用所提出的方法可以更有效地带走热量。光学和SEM检查的结果也证实了所提出的方法是有利的。

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