Toolbit Mounted Thin Film Zinc Oxide Sensors for Process Control in Lathe and Milling Machine Applications

B. Bischoff, S. Ramalingam, W. Robbins
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引用次数: 1

Abstract

Thin films (1.8 microns thick) of ZnO have been deposited on tungsten carbide tool inserts by rf diode sputtering. The goal is to use ZnO film as a sensor to monitor acoustic emission generated during cutting or t ool fracture. The sensor has detected resonances in the machine structure in the 100 Hz to 20 KHz range as well as acoustic emission signals originating at the cutting site in the 100- 500 KHz range. During forced tool fracture, distinctive signals were observed from the sensor which could be used for cutting operation shut-down. The measured ZnO stress sensitivity averaged about 0.022 v-m/N which is about 35% of the s ingle crystal value. The highest observed was about 0.04 v-m/N. The sensor was still operational at the end of the useful cutting lifetime of the i nsert.
用于车床和铣床过程控制的刀头安装的薄膜氧化锌传感器
利用射频二极管溅射技术在碳化钨刀具刀片上沉积了厚度为1.8微米的ZnO薄膜。目标是使用ZnO薄膜作为传感器来监测切割或冷却断裂过程中产生的声发射。该传感器已检测到机器结构在100赫兹至20千赫范围内的共振,以及切割部位在100- 500千赫范围内发出的声发射信号。在工具强制断裂过程中,从传感器中观察到独特的信号,可用于切断切削作业。ZnO的应力灵敏度平均值约为0.022 v-m/N,约为单晶值的35%。最高观测值为0.04 v-m/N。在钻头的有效切削寿命结束时,传感器仍可正常工作。
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