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VIBRATION OF BEAMS WITH TWO NON-OVERLAPPING DELAMINATIONS UNDER AXIAL COMPRESSIVE LOADING

机译:轴压载荷作用下具有两个非重叠分层的梁振动

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The free vibration of a homogeneous beam with two non-overlapping delaminations under axial compressive loading has been studied using the Euler-Bernoulli beam theory. The 'constrained mode' and the 'free mode' assumption in the study of delamination buckling and vibration were proposed. For both the 'constrained mode' and the 'free mode',the fundamental frequency decreases with the increase of the axial compressive loading. In the 'constrained mode',the fundamental frequency is the lowest when the delamination is located at the mid-plane. In both modes,beams with longer delamination length have lower fundamental frequency than beams with shorter delamination length. However,a beam in the 'constrained' mode has higher fundamental frequency than a beam in the 'free mode'. The fundamental frequency of the beam decreases as the delamination moves from the centre towards the end of the beam. The square of the primary frequency has a linear relationship with the compressive load normalized by the buckling load of the delaminated beam.
机译:使用欧拉-伯努利梁理论研究了具有两个不重叠分层的均质梁在轴向压缩载荷下的自由振动。提出了分层屈曲和振动研究中的“约束模式”和“自由模式”假设。对于“约束模式”和“自由模式”,基本频率都随着轴向压缩载荷的增加而降低。在“约束模式”下,当分层位于中平面时,基频是最低的。在这两种模式下,具有较长分层长度的光束的基本频率都比具有较短分层长度的光束的基本频率低。但是,“约束”模式下的光束比“自由模式”下的光束具有更高的基本频率。随着分层从梁的中心向末端移动,梁的基频降低。主频率的平方与通过分层梁的屈曲载荷归一化的压缩载荷具有线性关系。

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