Estimating tool life from measurements during longitudinal turning process using linear least squares

Abdusalam Alkhwaji, Muamar M. Ben Is, Hitem A. Aswihli
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Abstract

This research paper presents a procedure to estimate parameters for the modified Taylor equation using experimental measurement. The end-of-life times for each laboratory test were recorded well. The tool life has been measured by observing an abnormal change in the observed pitch of a sound from the cutting tool. The objective of this research is to understand the wear mechanisms of the insert carbide tool for different speed machining under dry condition using longitudinal turning process. The tool life equation obtained by linearizing the expanded Taylor tool life equation and solving a linear system of equations using linear least squares. In this study, both the experimental data and analytical solution show reasonable fit. The estimated tool life model simulates the measured end of tool life using the sound inspection method. An additional analysis to confirm effects of each cutting parameter on the tool life have been presented. Estimating the Tool life (TL) model using nonlinear least squares could give more accurate results which is going to be considered in the future study. The significance of this study is to save resources in the manufacturing industry by avoiding estimating tool life during turning process. Since that cause delay in the production time and waste of resources.               
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利用线性最小二乘法根据纵向车削过程中的测量结果估算刀具寿命
本研究论文介绍了一种利用实验测量估算修正泰勒方程参数的程序。每次实验室测试的寿命终止时间都记录得很清楚。刀具寿命是通过观察切削刀具发出的声音音调的异常变化来测量的。这项研究的目的是了解在干燥条件下使用纵向车削工艺进行不同速度加工时刀片硬质合金刀具的磨损机制。刀具寿命方程是通过将扩展的泰勒刀具寿命方程线性化,并使用线性最小二乘法求解线性方程组而得到的。在这项研究中,实验数据和分析解均显示出合理的拟合。估计的刀具寿命模型模拟了使用声学检测方法测量的刀具寿命终点。此外,还进行了其他分析,以确认各切削参数对刀具寿命的影响。使用非线性最小二乘法估计刀具寿命(TL)模型可以得到更精确的结果,这将在今后的研究中加以考虑。这项研究的意义在于避免在车削过程中估算刀具寿命,从而节省制造业的资源。因为这会导致生产时间延迟和资源浪费。
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