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Monitoring single-point dressers using fuzzy models

机译:使用模糊模型监控单点梳妆台

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摘要

Grinding causes progressive dulling and glazing of the grinding wheel grains and clogging of the voids on the wheel's surface with ground metal dust particles, which gradually increases the grinding forces. The condition of the grains at the periphery of a grinding wheel strongly influences the damage induced in a ground workpiece. Therefore, truing and dressing must be carried out frequently. Dressing is the process of conditioning the grinding wheel surface to reshape the wheel when it has lost its original shape through wear, giving the tool its original condition of efficiency. Despite the very broad range of dressing tools available today, the single-point diamond dresser is still the most widely used dressing tool due to its great versatility. The aim of this work is to predict the wear level of the single-point dresser based on acoustic emission and vibration signals used as input variables for fuzzy models. Experimental tests were performed with synthetic diamond dressers on a surface-grinding machine equipped with an aluminum oxide grinding wheel. Acoustic emission and vibration sensors were attached to the tool holder and the signals were captured at 2MHz. During the tests, the wear of the diamond tip was measured every 20 passes using a microscope with 10 to 100.X magnification. A study was conducted of the frequency content of the signals, choosing the frequency bands that best correlate with the diamond's wear. Digital band-pass filters were applied to (he raw signals, after which two statistics were calculated to serve as the inputs for the fuzzy models. The results indicate that the fuzzy models using the aforementioned signal statistics are highly effective for predicting the wear level of the dresser.
机译:研磨导致磨削轮颗粒的渐进式钝化和玻璃,带有地面金属粉尘颗粒的轮子表面上的空隙的堵塞,逐渐增加研磨力。磨轮周边的颗粒的状况强烈影响地面工件中造成的损伤。因此,必须经常进行制定和敷料。敷料是调节砂轮表面的过程,以通过磨损损失原始形状时重塑车轮,使工具成为其原始效率条件。尽管今天提供了广泛的敷料工具,但单点钻石梳妆台仍然是由于其巨大的多功能性而最广泛使用的梳妆台。这项工作的目的是基于用于模糊模型的输入变量的声发射和振动信号来预测单点梳妆台的磨损水平。在配备有铝氧化铝砂轮的表面磨床上用合成金刚石梳妆台进行实验试验。声发射和振动传感器连接到刀架上,并且信号在2MHz处捕获。在测试期间,使用具有10至100.x放大率的显微镜测量金刚石尖端的磨损。研究了信号的频率内容,选择与钻石磨损最佳相关的频带。应用数字带通滤波器(他原始信号,之后计算出两个统计数据作为模糊模型的输入。结果表明,使用上述信号统计的模糊模型非常有效地预测磨损水平梳妆台。

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