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The effect of vibration and cutting zone temperature on surface roughness and tool wear in eco-friendly MQL turning of AISI D2

机译:振动和切割区温度对EISI D2环保MQL转动表面粗糙度和工具磨损的影响

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Today, developments in technology have gained momentum more than ever, and the need for efficiency in production as well as in the ecological domain has increased significantly. Studies examining dry machining and coolant removal have been superseded by those presenting new cooling and lubrication techniques. The effects on surface roughness directly related to final product quality are being investigated in terms of tool life and employee health. This has resulted in more frequent use of the eco-friendly minimum quantity lubrication (MQL) technique, which has now become a major competitor to dry and coolant machining. In this study, AISI D2 cold work tool steel, a material widely used in the mold industry, was used as the workpiece. Tests were carried out under dry and MQL conditions and the temperature, cutting tool vibration amplitude, tool wear, surface roughness and tool life were evaluated. The experiments were carried out using two different cutting tool coating types (CVD-chemical vapor deposition and PVD-physical vapor deposition) and three different cutting speeds (60, 90 and 120?m/min) at a constant cutting depth (1?mm) and feed rate (0.09?mm/rev). Results revealed that tool wear, cutting temperature and cutting tool vibration amplitude were lower by 23, 25, and 45%, respectively, compared to dry cutting. Because of these improvements, the surface roughness of the workpiece was improved by 89% and tool life was increased by up to 267%.
机译:如今,技术的发展比以往任何时候都超过了势头,并且在生产中的效率以及生态领域的效率明显增加。通过呈现新的冷却和润滑技术的那些,已经取代了检查干加工和冷却剂去除的研究。在刀具寿命和员工健康方面正在研究与最终产品质量直接相关的表面粗糙度的影响。这导致了更频繁地利用环保的最小数量润滑(MQL)技术,现已成为干燥和冷却剂加工的主要竞争对手。在本研究中,AISI D2冷工具钢,模具行业广泛应用的材料被用作工件。在干燥和MQL条件下进行测试,并评估温度,切削刀具振动幅度,工具磨损,表面粗糙度和刀具寿命。使用两种不同的切削刀具涂层(CVD-化学气相沉积和PVD-物理气相沉积)进行实验,并在恒定切割深度(1Ωmm)处具有三种不同的切割速度(60,90和120μm/ min)(1Ω )和进料速率(0.09?mm / Rev)。结果表明,与干切削相比,工具磨损,切削温度和切削刀具振动幅度分别较低23,25和45%。由于这些改进,工件的表面粗糙度提高了89%,刀命寿命升高至267%。

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