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Dataset on flank wear cutting force and cutting temperature assessment of austenitic stainless steel AISI316 under dry wet and cryogenic during face milling operation

机译:平面铣削过程中干湿和低温下奥氏体不锈钢AISI316的侧面磨损切削力和切削温度评估的数据集

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摘要

The contemporaneous examination focuses on the impact of spindle speed as well as an eco-pleasing cooling strategy in the midst of processing of AISI316. Investigations were executed at three different machining approaches viz. dry, wet and cryogenic (LN2) using cemented carbide inserts. Water dissolvable oil was used as a cutting fluid for flood cooling approach. The workpiece was processed under three distinctive cutting speeds i.e. 1000, 2000 and 3000 rpm however feed rate and depth of cut were kept consistent at 450 mm/min and 1mm separately. An exhaustive investigation on the cooling impacts of LN2 technique on a segment of the significant machinability perspective, for instance, cutting force (Fx), insert wear, surface quality and processing temperature is delineated. The beforehand specified processing responses were documented and contrasted all together to demonstrate the reasonableness and achievability of LN2 approach in examination with dry and wet machining methodology. The outcomes accomplished in the midst of the examination obviously settled the commonness of realizing LN2 for achieving upgraded machinability inside a predetermined scope of process parameters.
机译:同时检查的重点是在AISI316加工过程中主轴转速的影响以及令人愉悦的冷却策略。研究是在三种不同的加工方法下进行的。使用硬质合金刀片进行干,湿和低温(LN2)处理。水溶性油用作洪水冷却方法的切削液。工件以三种不同的切削速度进行加工,即1000、2000和3000 rpm,但是进给速度和切削深度分别保持一致,分别为450 mm / min和1mm。描述了LN2技术对重要切削性能方面的冷却影响的详尽研究,例如切削力(Fx),刀片磨损,表面质量和加工温度。记录并预先对比了预先指定的处理响应,以证明LN2方法在干式和湿式加工方法检查中的合理性和可实现性。在检查过程中完成的结果显然解决了在预定的工艺参数范围内实现LN2以实现更高的切削性的普遍性。

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