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A Novel Technique to Achieve Sustainable Machining System

机译:一种实现可持续加工系统的新技术

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Turning is one of the most fundamental and indispensable processes of metal removal in industry. Increasing pollutionpreventing initiatives globally and consumer focus on environmentally conscious products has put increased pressure on industries to minimize or eliminate the use of cutting fluids. The use of solid lubricant in machining operation is one of the most effective strategies in this direction to achieve sustainable machining system. In the present research work, the feasibility of a novel approach for developing a new generation of machining technique namely High Pressure Minimum Quantity Solid Lubricant experimental set-up has been envisaged with an aim to improve process performance and to eliminate the use of cutting fluids in machining operation. A detailed comparison has been made with wet, dry, MQL machining operation to assess the process performance on the basis of tool wear and surface finish. The results indicate that HP-MQSL mixture at a small and constant flow allows better penetration of the mixture into the tool-work and tool-chip interface, thus providing reduction on the tool wear and surface roughness more effectively than a wet, dry, and MQL machining at high speed conditions, thereby to achieve sustainable machining system.
机译:转弯是工业中最基本和最不可或缺的金属去除过程之一。增加全球污染措施和消费者专注于环保产品的焦点,对行业提高了压力,以最大限度地减少或消除切削液的使用。在加工操作中使用固体润滑剂是实现可持续加工系统方向上最有效的策略之一。在本研究工作中,新一代用于开发新一代加工技术的新方法的可行性即高压最小量固体润滑剂实验设置,目的是改善工艺性能并消除切削液中的使用加工操作。采用湿润,干燥,MQL加工操作进行了详细的比较,以基于工具磨损和表面光洁度来评估工艺性能。结果表明,小恒定流动的HP-MQSL混合物可以更好地渗透到工具工作和工具芯片界面中,从而更有效地减少了刀具磨损和表面粗糙度,而不是湿,干燥和MQL在高速条件下加工,从而实现可持续加工系统。

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