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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A new approach to investigate tool condition using dummy tool holder and sensor setup
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A new approach to investigate tool condition using dummy tool holder and sensor setup

机译:一种使用假刀架和传感器设置来研究刀具状况的新方法

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摘要

The industrial demand for automated machining systems to enhance process productivity and quality in machining aerospace components requires investigation of tool condition monitoring. The formation of chip and its removal have a remarkable effect on the state of the cutting tool during turning. This work presents a new technique using acoustic emission (AE) to monitor the tool condition by separating the chip formation frequencies from the rest of the signal which comes mostly from tool wear and plastic deformation of the work material. A dummy tool holder and sensor setup have been designed and integrated with the conventional tool holder system to capture the time-domain chip formation signals independently during turning. Several dry turning tests have been conducted at the speed ranging from 120 to 180 m/min, feed rate from 0.20 to 0.50 mm/rev, and depth of cut from 1 to 1.5 mm. The tool insert used was TiN-coated carbide while the work material was high-carbon steel. The signals from the dummy setup clearly differ from the AE signals of the conventional setup. It has been observed that time-domain signal and corresponding frequency response can predict the tool conditions. The rate of tool wear was found to decrease with chip breakage even at higher feed rate. The tool wear and plastic deformation were viewed to decrease with the increased radius of chip curvature and thinner chip thickness even at the highest cutting speed, and these have been verified by measuring tool wear. The chip formation frequency has been found to be within 97.7 to 640 kHz.
机译:为了提高航空零件的加工生产率和质量,对自动加工系统的工业需求要求对工具状态监视进行研究。切屑的形成及其清除对车削过程中切削刀具的状态有显着影响。这项工作提出了一种使用声发射(AE)的新技术,该技术通过将切屑形成频率与其余信号分离开来来监控刀具状态,其余信号主要来自刀具磨损和工作材料的塑性变形。假人刀架和传感器设置已设计并与常规刀架系统集成在一起,以在车削过程中独立捕获时域切屑形成信号。已经以120至180 m / min的速度,0.20至0.50 mm / rev的进给速度以及1至1.5 mm的切削深度进行了几次干车削试验。所使用的工具刀片为TiN涂层硬质合金,而工作材料为高碳钢。虚拟设置的信号明显不同于传统设置的AE信号。已经观察到,时域信号和相应的频率响应可以预测工具状况。发现即使在较高的进给速度下,刀具的磨损率也会随着切屑断裂而降低。即使在最高切削速度下,刀具磨损和塑性变形也随着切屑曲率半径的增加和切屑厚度的减小而减小,并且这些已通过测量刀具磨损得到了验证。已经发现切屑形成频率在97.7至640kHz之内。

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