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Investigation of Crack Effects on Isotropic Cantilever Beam

机译:各向同性悬臂梁裂纹效应的研究

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摘要

The effect of an open edge crack on the parameters of an isotropic aluminum cantilever beam was investigated. The rotational stiffness and flexibility of the cantilever beam crack were analytically calculated for various crack depths. The results showed that as the depth of the crack increased, the rotational stiffness decreased and flexibility increased. For the intact cantilever beam, acceptable variation was validated by comparing the analytically estimated natural frequencies of the first three modes of bending vibration, and those obtained through modal analysis using the block Lanczos method of finite element analysis software ANSYS v16. The software was used to perform a structural, modal and harmonic analysis of the cracked cantilever beam under different scenarios. The results showed a reduction in the natural frequencies with the existence of the crack. The amount of the reduction varied based on the location and depth of the crack and the pattern of mode shapes. The calculated value of stiffness of the cantilever beam decreased with the presence of the crack. The amount of the decrease was dependent on the depth and location of the crack. The calculated values of the (SIF) stress intensity factor in mode I of the crack (opening edge crack) were proportional to the depth of the crack and inversely proportional to the distance of the crack from the fixed end of the cantilever beam. Based on these results, it is inferred that changes in the modal and structural parameters of the cracked cantilever beam were evidence which could be used to identify cracks.
机译:研究了开放边缘裂缝对各向同性铝悬臂梁参数的影响。分析悬臂梁裂纹的旋转刚度和柔韧性用于各种裂纹深度。结果表明,随着裂缝的深度增加,旋转刚度降低,灵活性增加。对于完整的悬臂梁,通过比较前三种弯曲振动模式的分析估计的自然频率,以及通过使用有限元分析软件ANSYS V16的块Lanczos方法通过模态分析获得的那些来验证可接受的变化。该软件用于在不同场景下对裂纹悬臂梁的结构,模态和谐波分析。结果表明,具有裂缝存在的自然频率降低。基于裂缝的位置和深度和模式形状的模式变化的减少量。悬臂梁的刚度的计算值随着裂缝的存在而降低。减少量取决于裂缝的深度和位置。裂缝(开口边缘裂纹)的模式I中的(SIF)应力强度因子的计算值与裂缝的深度成比例,并且与悬臂梁的固定端的裂缝的距离成反比。基于这些结果,推断出裂纹悬臂梁的模态和结构参数的变化是可用于识别裂缝的证据。

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