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Numerical and Experimental Study on Buckling and Postbuckling Behavior of Cracked Cylindrical Shells

机译:裂纹圆柱壳屈曲和后屈曲行为的数值和实验研究

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摘要

The effect of crack on load-bearing capacity and buckling behavior of cylindrical shells is an essential consideration in their design. In this paper, experimental and numerical buckling analysis of steel cylindrical shells of various lengths and diameters with cracks have been studied using the finite element method, and the effect of crack position, crack orientation and the crack length-to-cylindrical shell perimeter (lambda = a/(2 pi r)) and shell length-to-diameter (L/D) ratios on the buckling and post-buckling behavior of cylindrical shells has been investigated. For several specimens, buckling test was performed using an INSTRON 8802 servo hydraulic machine, and the results of experimental tests were compared to numerical results. A very good correlation was observed between numerical simulation and experimental results. Finally, based on the experimental and numerical results, sensitivity of the buckling load to the shell length, crack length and orientation has also been investigated.
机译:裂纹对圆柱壳的承载能力和屈曲行为的影响是其设计中必须考虑的因素。本文利用有限元方法研究了不同长度和直径的带裂纹钢圆柱壳的实验和数值屈曲分析,以及裂纹位置,裂纹取向和裂纹长度对圆柱壳周长(λ)的影响。 = a /(2 pi r))和壳长与直径(L / D)之比对圆柱壳屈曲和后屈曲行为的影响进行了研究。对于几个样品,使用INSTRON 8802伺服液压机进行了屈曲测试,并将实验测试的结果与数值结果进行了比较。在数值模拟和实验结果之间观察到非常好的相关性。最后,基于实验和数值结果,还研究了屈曲载荷对壳长,裂纹长度和取向的敏感性。

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