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Buckling and free vibration of a side-cracked Mindlin plate under axial in-plane load

机译:轴向面内载荷下侧面破裂的薄型板的屈曲和自由振动

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In this paper, the buckling and free vibration of a Mindlin plate with a side crack are presented considering a uniaxial in-plane compressive or tensile load. The side crack is through the thickness of the plate. In the Ritz method, a series of corner functions are incorporated into the admissible functions which consist of the modified characteristic functions. With this treatment, one can describe the singularity in stress near the tip of the crack as well as the discontinuities in both displacement and bending rotations across the crack. The buckling loads and natural frequencies are solved through eigenvalue problems considering the existence of the crack. The effects of location, length and orientation of the crack on the buckling and free vibration of the loaded plate are demonstrated. The coupling effect of the crack and the in-plane load on the vibrational characteristics of the plate is analyzed with varying parameters. It is shown that the influences of the tensile and compressive preloads are enhanced by the crack, and the tensile preload can cause the low-order frequency to increase with the growing crack.
机译:在本文中,考虑到单轴面内压缩或拉伸载荷,提出了一种带侧裂纹的Mindlin板的屈曲和自由振动。侧裂线是通过板的厚度。在RITZ方法中,一系列角函数被纳入可允许的功能,该功能包括修改的特征功能。通过这种处理,人们可以描述裂缝尖端附近的应力的奇点以及在裂缝上的位移和弯曲旋转中的不连续性。考虑到裂缝的存在,通过特征值问题解决屈曲负荷和自然频率。对装载板的弯曲和自由振动的裂缝的位置,长度和取向的影响进行了说明。通过不同的参数分析裂缝和面内载物对板的振动特性的耦合效应。结果表明,裂缝增强了拉伸和压缩预载荷的影响,并且拉伸预载会导致低位频率随着生长裂缝而增加。

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