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Evaluation of the performance during hard turning of OHNS steel with minimal cutting fluid application and its comparison with minimum quantity lubrication

机译:用最小切削液应用及最小数量润滑的钢材硬盘硬盘性能评价

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Cutting fluid application plays a significant role in the manufacturing industries that acts as a coolant as well as a lubricant. The conventional flood cooling application of cutting fluids not only increases the production cost on account of the expenses involved in procurement, storage and disposal but also creates serious environmental and health hazards. In order to overcome these negative effects, techniques like Minimum quantity lubrication (MQL) and Minimal Cutting fluid application (MCFA) have increasingly found their way into the area of metal cutting and have already been established as an alternative to conventional wet machining. This paper investigates the effect of minimal Cutting fluid application (MCFA) which involves application of high velocity pulsing jet of proprietary cutting fluids at the contact zones using a special fluid application system. During hard turning of oil hardened non shrinkable steel (OHNS) on cutting temperature and tool wear and to compare the performance with Minimum quantity lubrication (MQL) assisted hard turning in which cutting fluid is carried in a high velocity stream of air. An attempt was also made to compare the performance during Turning with MCFA and MQL application with conventional wet and dry turning by analysing the tool wear pattern using SEM images.
机译:切削液应用在制造业中起着重要作用,其充当冷却剂以及润滑剂。切削液的传统洪水冷却施加不仅会增加生产成本,而是根据采购,储存和处置所涉及的费用,但也产生严重的环境和健康危害。为了克服这些负面影响,越来越多地发现它们进入金属切割面积的最小数量润滑(MQL)和最小切削液应用(MCFA),并且已经建立了传统湿加工的替代方案。本文研究了最小的切削液应用(MCFA)的效果,其涉及使用特殊的流体应用系统在接触区处应用专有切削液的高速脉冲射流。在切削温度和工具磨损上的油硬化的不可收缩钢(OHNS)的硬盘期间,并将性能与最小数量润滑(MQL)进行比较,辅助硬转动,其中切削液在高速空气中携带。还有一种尝试通过使用SEM图像分析工具磨损模式,使用MCFA和MQL应用程序在使用MCFA和MQL应用程序中进行比较。

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