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Comparison of machining performance of microwave post- heated WC insert with dry, wet and MQL cutting in turning operation

机译:微波后加热WC插入刀片加工性能的比较,干燥,湿,MQL切割转动操作

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This paper describes the application of microwave energy to enhance the machining performance of tungsten carbide tool insert in order to reduce the use of cutting fluids. Application of cutting fluids increases the machining costs, which include fluid consumption, maintenance and disposal costs. Health hazards for workers, environmental issues and economic aspects of cutting fluid motivate researchers to move towards coolant-free machining. This study aimed to minimize the dependency on cutting fluid during machining and to suggest a suitable alternative to improve the performance of tungsten carbide tool insert. Microwave post-treatment of tungsten carbide tool insert is the emerging technique in which the tool insert is subjected to microwave irradiation at a frequency of 2.5GHz. In the present investigation, turning operations have been performed on AISI 1040 steel (American Iron and Steel Institue) using microwave-treated insert under dry cutting environment and untreated insert using dry, wet and minimum quantity lubrication (MQL) cutting environment. Variation of tool wear and surface roughness has been experimentally investigated in this study to evaluate the machining performance. Tool wear mechanism and chip morphology have been analysed using scan electron microscopy. The results indicate that microwave-treated insert achieved better performance than fresh tungsten carbide (WC/Co) inserts used in dry, wet and MQL cutting conditions.
机译:本文介绍了微波能量,以提高碳化钨工具插入件的加工性能,以减少切削液的使用。切削液的应用增加了加工成本,包括流体消耗,维护和处置成本。切削液的工人,环境问题和经济方面的健康危害激励研究人员走向无冷却剂的加工。本研究旨在最大限度地减少加工过程中切削液的依赖性,并提出了改善碳化钨工具插入物性能的合适替代方案。微波处理碳化钨工具插入物是新兴技术,其中工具插入物在2.5GHz的频率下进行微波辐射。在本调查中,在干切削环境下使用微波处理插入件和使用干燥,湿和最小量润滑(MQL)切割环境,对AISI 1040钢(美国钢铁机床)进行了转型操作。在本研究中已经实验研究了工具磨损和表面粗糙度的变化,以评估加工性能。使用扫描电子显微镜分析工具磨损机制和芯片形态。结果表明,微波处理的插入件的性能比干燥,湿和MQL切割条件中使用的新鲜碳化钨(WC / CO)插入物更好。

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