Parametric Vibrations of Axially Moving Beams with Multiple Edge Cracks

M. Sarıgül
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引用次数: 3

Abstract

Nonlinear transverse vibrations of axially moving beams with multiple cracks is handled studied. Assuming that the beam moves with mean velocity having harmonically variation, influence of the edge crack on the moving continua are investigated in this study. Due to existence of the crack in the transverse direction, the healthily beam is divided into parts. The translational and rotational springs are replaced between these parts so that high stressed regions around the crack tips are redefined with the springs' energies. Thus, the problem is converted to an axially moving spring-beam system. The equations of motion and its corresponding conditions are obtained by means of the Hamilton Principle. In numerical analysis, the natural frequencies and responses of the spring-beam system are investigated for principal parametric resonance in detail. Some important results are obtained; the natural frequencies decreases with increasing crack depth. In case of the beam travelling with high velocities, the effects of crack's depth on natural frequencies seems to be vanished.
多边裂纹轴向运动梁的参数振动
研究了多裂纹轴向运动梁的非线性横向振动问题。假设梁的平均速度为谐波变化,研究了边缘裂纹对运动连续体的影响。由于横向裂缝的存在,健康梁被分成了几个部分。在这些部件之间替换了平移和旋转弹簧,以便用弹簧的能量重新定义裂纹尖端周围的高应力区域。因此,问题被转换成一个轴向移动的弹簧梁系统。利用哈密顿原理得到了运动方程及其相应条件。在数值分析中,详细研究了主参数共振下弹簧梁系统的固有频率和响应。得到了一些重要的结果;固有频率随裂纹深度的增加而减小。当梁以高速运动时,裂纹深度对固有频率的影响似乎消失了。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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