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FINITE ELEMENT ANALYSIS OF COUPLED LATERAL AND TORSIONAL VIBRATIONS OF A ROTOR WITH MULTIPLE CRACKS

机译:具有多个裂缝的转子耦合横向和扭转振动的有限元分析

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The coupling between lateral and torsional vibrations has been investigated for a rotor dynamic system with breathing crack model. The stiffness matrix has been developed for the shaft element which accounts for the effect of the crack and all six degrees of freedom per node. Since the off-diagonal terms of the stiffness matrix represent the coupling of the respective modes, the special attention has been paid on accurate determination of their values. Based on the concepts of fracture mechanics, the variation of the stiffness matrix over the full shaft revolution is represented by the truncated cosine series where the fitting coefficient matrices are extracted from the stiffness matrices of the cracked shaft for a number of its different angular positions. The variation of the system eigenfrequencies and dynamic response of the rotor with two cracks have been studied for various shaft geometries, crack axial locations, and relative phase of cracks.
机译:已经研究了具有呼吸裂纹模型的转子动态系统之间的横向和扭转振动之间的耦合。已经为轴元件开发了刚度矩阵,其占裂缝和每个节点所有六个自由度的效果。由于刚度矩阵的偏差术语表示相应模式的耦合,因此已经在精确确定其值时得到了特别的注意。基于裂缝力学的概念,在全轴旋转上的刚度矩阵的变化由截断余弦系列表示,其中拟合系数矩阵从裂纹轴的刚度矩阵提取到裂缝轴的刚性矩阵,以获得许多不同的角度位置。已经研究了各种轴几何,裂缝轴向位置和裂缝的相对相位的具有两个裂缝的转子的系统特征频官和动态响应。

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