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Tool Flank Wears Estimation by Simplified SVD on Emitted Sound Signals

机译:刀具侧面通过简化的SVD在发出的声音信号上磨损估计

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A non disruptive Monitoring of tool flank wear is a prudent way in the Production process without affecting the throughput. The machining process which involves the tool wear condition inspection without stopping the process has to be done for this. A simple method is proposed through this paper with a novelty of reducing the processing time by sampling method to find the degree of wear of tool flank by closely analyzing a small portion of the sound signal emitted while the turning process captured and in progress. In this work an aluminium portion was used as a primary material on which the carbide material is used as the cutting edge. A uniform Cutting speed is maintained throughout the experiments. The constant feed rate and fixed cutting depth were maintained were as the flank wear assigned as floating. Recordings were done for the emitted sound signals when the turning process was in progress using a fresh tool (0 flank wear) then with another carbide tool with slight wear (0.2 - 0.25 mm) and finally with the same process but with a severely warned tool bit (0.4mm and above). These recordings were done using a high position microphone in an interleaved way Individual analysis of the sound signals using Singular Value Decomposition (SVD) is done on pieces of recorded sound waves A good correlation was formed with the increase in flank wear of the tools and the SVD values found for the pieces of sound waves irrespective of temporal intervals. Hence it can be decided that tool wear monitoring of flank while turning was in progress in small intervals by utilizing SVD features on such emitted sound signal is a prudent and significantly simple method and proved using iterative experiments.
机译:对工具侧面磨损的非破坏性监测是生产过程中的谨慎方式,而不会影响吞吐量。涉及工具磨损条件检查而不停止该过程的加工过程必须为此进行。通过本文提出了一种简单的方法,并通过采样方法来减少处理时间来通过在捕获和正在进行的转弯过程中发出的一小部分来找到刀具侧面的磨损程度。在该工作中,铝部分用作主要材料,碳化物材料用作切削刃。在整个实验中保持均匀的切割速度。保持恒定的进料速率和固定切削深度是分配为浮动的侧面磨损。当使用新鲜工具(0个侧面磨损)正在进行转动过程时,录音是针对发射的声音信号进行的,然后用另一个具有轻微磨损的碳化物工具(0.2-0.25mm),最后具有相同的工艺,但具有严重警告工具位(0.4mm及以上)。这些录音是使用高位麦克风在交错方式中完成的,这些方式使用奇异值分解的声音信号(SVD)在记录的声波上完成,形成良好的相关性,随着工具的侧翼磨损的增加而形成了良好的相关性。无论时间间隔如何,都会发现声波的SVD值。因此,可以通过利用这种发射声信号的SVD特征来确定侧翼的刀具磨损监测,而在这种发射的声音信号上采用SVD特征是一种谨慎和显着简单的方法,并经过迭代实验证明。

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