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Vibration and buckling analysis of a cracked stepped column using finite element method

机译:裂纹阶梯柱的振动和屈曲有限元分析

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摘要

Components with varying cross-sections are most common in buildings and bridges as well as in machine parts. The stability of such structural members subjected to compressive forces is a topic of considerable scientific and practical interest. Tapered and stepped columns are very much useful in structural engineering because of their reduced weight compared to uniform columns for the same axial load carrying capacity or buckling load. In the current study free vibration and buckling analysis of a cracked two stepped cantilever column is analyzed by finite element method for various compressive loads. Simple beam element with two degrees of freedom is considered for the analysis. Stiffness matrix of the intact beam element is found as per standard procedures. Stiffness matrix for cracked beam element is found from the total flexibility matrix of the cracked beam element by inverse method in line with crack mechanics and published papers by researchers. Eigen value problem is solved for free vibration analysis of the stepped column under different compressive load. Variation of free vibration frequencies for different crack depths and crack locations is studied for successive increase in compressive load. Buckling load of the column is estimated from the vibration analysis.
机译:具有不同横截面的组件最常见于建筑物,桥梁以及机械零件中。这种受到压缩力的结构构件的稳定性是相当大的科学和实践兴趣的话题。锥形和阶梯形柱在结构工程中非常有用,因为相比于相同的轴向载荷或屈曲载荷的均匀柱,它们的重量减轻了。在目前的研究中,对于各种压缩载荷,通过有限元方法分析了开裂的两步悬臂柱的自由振动和屈曲分析。考虑具有两个自由度的简单梁单元进行分析。按照标准程序找到完整梁单元的刚度矩阵。裂纹梁单元的刚度矩阵可以根据裂纹力学和研究人员发表的论文,通过逆方法从裂纹梁单元的总柔度矩阵中求出。解决了特征值问题,可以对阶梯柱在不同压缩载荷下的自由振动进行分析。研究了不同裂纹深度和裂纹位置的自由振动频率的变化,以求压缩载荷的连续增加。根据振动分析估算柱的屈曲载荷。

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    Reddy P S;

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