Intelligent Diagnosis for Cutting Processes

T. Chan, Hsin-Hsien Lin, Yu-Chuan Wang, Chang-Chia Chuan, Han-Huel Lin
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Abstract

Because of the requirements of automated processing, the cutting status of a tool should be monitored in real-time to find out the processing quality in advance and detect cutting abnormalities in time. Thus, we developed an application called APP for tool-life management and damage detection to help operators control the timing of tool replacement and avoid time-delays and loss after damage to the product. The proposed system consists of two sub-systems: an electronic system (to capture signals) and a software system (APP). The electronic system has an accelerometer, a signal capture card, a current sensor, and a temperature sensor. The software system has operating interfaces, data visualization, and early warning systems. The principal component analysis uses a linear combination with the largest variance. The eigenvalues and eigenvectors can be obtained by drawing a slope diagram of the number of principal components by eigenvalues. The point when the slope changes significantly can be used as the selected monitoring characteristic parameter. To reduce the manpower required for follow-up processing, the proposed system can be combined with different controllers to achieve customized parameter adjustment. Unmanned control can ensure processing efficiency and quality.
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切割过程智能诊断
由于自动化加工的要求,需要对刀具的切削状态进行实时监控,提前发现加工质量,及时发现切削异常。因此,我们开发了一个名为APP的应用程序,用于工具寿命管理和损坏检测,以帮助操作人员控制工具更换的时间,避免产品损坏后的时间延迟和损失。该系统由两个子系统组成:一个电子系统(捕获信号)和一个软件系统(APP)。电子系统有一个加速度计、一个信号采集卡、一个电流传感器和一个温度传感器。软件系统具有操作界面、数据可视化和预警系统。主成分分析使用最大方差的线性组合。特征值和特征向量可以通过绘制主成分个数与特征值的斜率图得到。选取坡度变化较大的点作为监测特征参数。为了减少后续处理所需的人力,本文提出的系统可以与不同的控制器相结合,实现自定义参数调整。无人控制,保证加工效率和质量。
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