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Evaluating the effect of coolant pressure and flow rate on tool wear and tool life in the steel turning operation

机译:评估冷却液压力和流量对车削钢件时刀具磨损和刀具寿命的影响

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摘要

High-pressure coolant (HPC) delivery is an emerging technology that delivers a high-pressure fluid to the tool and workpiece in machining processes. High fluid pressure allows for better penetration of the fluid into the cutting zone, enhancing the cooling effect, and decreasing tool wear through lubrication of the contact areas. The main objective of this work is to understand how tool wear mechanisms are influenced by fluid pressure under different cutting speeds in the finish turning of AISI 1045 steel using coated carbide tools. The main finding was that the use of a lower cutting speed (v c = 490 m/min) in dry cutting resulted in tool life close to that obtained with cutting fluid, but when the cutting speed was increased (v c = 570 m/min), the high-pressure coolant was effective in prolonging the life of the cutting tool. It was also concluded that, regardless of the cutting speed and cooling/lubrication system, the wear mechanisms were the same, namely abrasion and attrition.
机译:高压冷却剂(HPC)输送是一项新兴技术,可在加工过程中向工具和工件输送高压流体。较高的流体压力可使流体更好地渗透到切削区域中,从而增强冷却效果,并通过润滑接触区域来减少工具磨损。这项工作的主要目的是了解在使用涂层硬质合金刀具对AISI 1045钢进行精加工时,在不同切削速度下,流体压力如何影响刀具磨损机理。主要发现是在干切削中使用较低的切削速度(v c = 490 m / min)可使刀具寿命接近切削液,但当切削速度提高时(v c = 570 m / min),高压冷却剂有效延长了刀具的使用寿命。还得出结论,无论切削速度和冷却/润滑系统如何,磨损机理都是相同的,即磨损和磨损。

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