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Crack mathematical modeling to study the vibration analysis of cracked micro beams based on the MCST

机译:裂缝数学建模研究基于MCST的裂纹微梁振动分析

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In this paper, a new approach is presented to capture size effect on the dynamic behavior of a cracked micro beam based on the modified couple stress theory (MCST). Firstly, the stiffness of equivalent torsional spring at the crack location is obtained based on the MCST and also considering the stress intensity factor for different models of the open edge crack. To capture size dependency, the governing equations of motion of the system and also associated boundary conditions are derived based on the MCST and using Hamilton's principle and stress intensity factor at crack location. Then the natural frequencies of the cracked micro beam are determined. Finally, the variation of natural frequencies of the system are studied with respect to different values of the system parameters such as the material length scale parameter, crack depth, crack location, based on the MCST and considering the newly proposed modeling of the local stiffness at the crack location. The results show that the crack depth, crack location, and also the material length scale parameter are extremely effective on lateral vibrations characteristics of the system.
机译:本文提出了一种新方法,以捕获基于修改的耦合应力理论(MCST)的裂纹微束动态行为的尺寸效应。首先,基于MCST获得裂缝位置处的等效扭转弹簧的刚度,并且还考虑了开口边缘裂纹的不同模型的应力强度因子。为了捕获尺寸依赖性,基于MCST导出系统和相关边界条件的控制运动方程,并在突发位置使用Hamilton的原理和应力强度因子来导出。然后确定裂纹微束的固有频率。最后,对系统参数的不同值研究了系统的自然频率的变化,例如基于MCST的材料长度比例,裂纹深度,裂缝位置,并考虑到新提出的局部刚度建模裂缝位置。结果表明,裂纹深度,裂缝位置,以及材料长度比例对系统的横向振动特性非常有效。

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