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Experimental and FEM analysis of dry and cryogenic turning of hardened steel 100Cr6 using CBN Wiper tools

机译:用CBN刮水器工具对硬化钢的干燥和低温转动的实验和有限元分析

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Employing cutting fluids in machining processes, especially for difficult-to-cut materials, improves machinability through prolonged tool life, improves surface integrity and chip evacuation. However, like oil and water-based cutting fluids are hazardous to the environment and workers’ health, alternative solutions are required. Liquid Nitrogen (LN2) is a cryogenic fluid that can be an option due to its low boiling point (-197oC) and the fact it exists in the atmosphere at room conditions. Nevertheless, the feasibility of cryogenic cooling techniques in machining is not fully understood; this is why the Finite Element Method (FEM) could give an insight into the phenomena happening on the tool-chip/workpiece interface. This research aims to compare fundamental and industrial outputs when turning hardened steel 100Cr6 using Cubic Boron Nitride (CBN) inserts with wiper geometry in dry conditions and with cryogenic cooling. For this purpose, turning experimental tests were performed in both cooling conditions varying the cutting speed (150-550 m/min). Machining forces were measured during the tests, and then tool wear, microstructural damage, and residual stresses of the workpiece were characterised. A nose turning (3D) FEM model was also developed to understand the influence of cooling strategy on the outputs measured experimentally.
机译:在加工过程中采用切削液,特别是对于难以切割的材料,通过长时间的工具寿命提高了可加工性,提高了表面完整性和芯片疏散。然而,与油和水性切削液一样对环境和工人的健康有害,需要替代解决方案。液氮(LN2)是一种低温流体,可以是由于其低沸点(-197oC)而存在的选项,并且在室内条件下的大气中存在它的事实。尽管如此,加工中低温冷却技术的可行性尚未完全理解;这就是为什么有限元方法(FEM)能够深入了解工具芯片/工件界面上发生的现象。本研究旨在使用立方氮化物(CBN)在干燥条件下用雨刷几何形状转动硬化钢100Cr6时的基本和工业输出,并在干燥条件下与低温冷却。为此目的,在改变切割速度(150-550m / min)的冷却条件下进行转向实验测试。在试验期间测量加工力,然后表征了工具磨损,微观结构损伤和残余应力。还开发了一种鼻子转动(3D)有限元模型,以了解在实验测量的输出上的冷却策略对输出的影响。

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