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An Investigation of the Work Hardening Behavior in Interrupted Cutting Inconel 718 under Cryogenic Conditions

机译:低温条件下间断切削Inconel 718的加工硬化行为的研究

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摘要

The severe work hardening phenomenon generated in the machining of Inconel 718 is harmful to continue cutting processes, while being good for the component’s service performance. This paper investigates the performance of cryogenic assisted machining used in the cutting processes, which can reduce the waste of fluids. The influence of dry and cryogenic machining conditions with different cutting speeds on the work hardening layer is investigated based on the interrupted cutting of Inconel 718. Cutting temperature distribution obtained from simulations under different conditions is used to discuss the potential mechanism of work hardening. Then, the depth of work hardening and degree of work hardening (DWH) are investigated to analyze the surface deformation behavior, which strengthens the machined surface during metal cutting processes. From the cutting experiments, the depth of the work hardening layer can reach more than 60 μm under the given cutting conditions. In addition, a deeper zone can be obtained by the cooling of liquid nitrogen, which may potentially enhance the wear performance of the component. The results obtained from this work can be utilized to effectively control the work hardening layer beneath the surface, which can be applied to improve the service performance.
机译:Inconel 718的加工过程中产生的严重工作硬化现象对继续进行切削加工有害,同时有利于组件的服务性能。本文研究了切削过程中使用的低温辅助加工的性能,这种加工可以减少流体的浪费。基于Inconel 718的间断切削,研究了不同切削速度下的干式和低温加工条件对工作硬化层的影响。通过模拟在不同条件下获得的切削温度分布,探讨了工作硬化的潜在机理。然后,研究加工硬化的深度和加工硬化的程度(DWH),以分析表面变形行为,从而增强金属切削过程中的加工表面。根据切削实验,在给定的切削条件下,加工硬化层的深度可以达到60μm以上。另外,通过液氮的冷却可以获得更深的区域,这可能潜在地增强组件的磨损性能。从这项工作中获得的结果可用于有效控制表面下的工作硬化层,可用于改善服务性能。

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