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A method of using Hoelder exponents to monitor tool-edge wear in high-speed finish machining

机译:在高速精加工中使用Hoelder指数监控刀刃磨损的方法

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摘要

Tool condition monitoring is increasingly important as a widespread application of automated, computer numerically controlled machining in a variety of modern industries. Although a significant amount of research on tool condition monitoring in machining has been conducted during the past few decades, the research is primarily focused on tool flank wear. Less attention is paid to tool-edge wear, which is a critical issue in high-speed finish machining where the feed rate is in the same magnitude as tool edge dimensions, and thus, the tool cutting edge is subjected to extensive mechanical and thermal deformation. The present study fills this important research gap in tool condition monitoring. This paper presents a method of monitoring tool-edge wear in the high-speed finish machining of an aerospace superalloy Inconel 718 by extracting Hoelder exponents from wavelet transform analysis of cutting vibrations. A total of 60 cutting experiments were conducted, covering a range of cutting speed and feed rate conditions. The experimental results show that cutting vibrations increase as tool-edge wear develops. Wavelet transform analysis can be employed to identify single local maxima of the cutting vibration signals. As tool-edge wear develops, the values of Hoelder exponents vary from 0.55 to 0.90. It is suggested that under the cutting conditions tested in the present study, 0.8 can be used as the threshold value of Hoelder exponents to differentiate severe and normal tool-edge wear.
机译:随着自动化,计算机数控加工在各种现代工业中的广泛应用,刀具状态监视越来越重要。尽管在过去的几十年中进行了大量有关刀具状态监测的研究,但研究主要集中在刀具侧面磨损方面。很少注意刀刃磨损,这是高速精加工中的关键问题,在高速精加工中进给速度与刀刃尺寸相同,因此,刀刃会受到广泛的机械变形和热变形。本研究填补了工具状态监测中的这一重要研究空白。本文提出了一种通过从切削振动的小波变换分析中提取Hoelder指数来监控航空航天高温合金Inconel 718的高速精加工中刀具刃口磨损的方法。总共进行了60次切削实验,涵盖了一系列切削速度和进给速度条件。实验结果表明,切削振动会随着刀刃磨损的增加而增加。小波变换分析可用于识别切削振动信号的单个局部最大值。随着工具边缘磨损的发展,Hoelder指数的值从0.55到0.90不等。建议在本研究中测试的切削条件下,可以将0.8用作Hoelder指数的阈值,以区分严重和正常的刀刃磨损。

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