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Flexural Characteristics of Tapered Bar in Relation to Taper Angle Measurements

机译:锥形杆与锥形角度测量相关的弯曲特性

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Flexural motion of a cantilever bar can be used to monitor the taper angle measurements of the bar without incorporating any geometric measurement. This provides non-destructive taper measurement with fast processing in manufacturing line. The laser ablation of a free end of the cantilever bar enables to generate a recoil pressure at the irradiated surface while resulting in external forcing function for the initiation of the flexural motion. Consequently, in the present study, laser induced ablation of free end tapered cantilever bar and resulting displacement and frequency of the flexural motion is examined. The study is extended to include influence of positive and negative bar taper angles on the flexural characteristics. In addition, deviation of displacement and frequency of the flexural motion due to tapered bar from the parallel bar is examined. It is found that the flexural characteristics of the tapered bar enable to determine taper angle of the bar with high accuracy.
机译:悬臂杆的弯曲运动可用于监测杆的锥角测量,而不结合任何几何测量。这提供了无损锥度测量,并在生产线中快速加工。悬臂杆的自由端的激光消融使得能够在照射表面处产生反冲压力,同时导致外部迫使弯曲运动的功能。因此,在本研究中,检查激光诱导自由端锥形悬臂杆的消融和产生的位移和弯曲运动的频率。该研究扩展到包括对弯曲特性对正极和负杆锥形角度的影响。另外,研究了来自来自平行杆的锥形杆的弯曲运动的位移和频率的偏差。发现锥形杆的弯曲特性能够以高精度确定杆的锥角。

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