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Plastic Buckling of Cylindrical Shells Under Transverse Loading

机译:横向载荷作用下圆柱壳的塑性屈曲

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Thick cylindrical shells under transverse loading exhibit an elephant foot buckling mode, whereas moderately thick cylindrical shells show a diamond buckling mode. There exists some intermediate geome- try at which the transition between buckling modes can take place. This behavior is significantly influenced by the radius-to-thickness ratio and the material yield strength, rather than the length-to-radius ratio and the axial force. This paper presents a critical value at which the transition of buckling modes occurs as a func- tion of the radius-to-thickness ratio and the material yield strength. The result shows that the circumferential wave number of the diamond buckling mode increases with decreasing wall thickness. The strain concentra- tion is also intensified for the diamond buckling modes compared with the elephant foot buckling modes.
机译:横向载荷下的厚圆柱壳表现出象脚屈曲模式,而中等厚度的圆柱壳表现出菱形屈曲模式。存在一些中间几何,可以在这些几何之间进行屈曲模式的转换。这种行为受半径/厚度比和材料屈服强度的影响很大,而不是受长度-半径比和轴向力的影响。本文提出了一个临界值,在该临界值处,屈曲模式的转变是半径-厚度比和材料屈服强度的函数。结果表明,金刚石屈曲模的周波数随壁厚的减小而增加。与大象脚屈曲模式相比,金刚石屈曲模式的应变集中也得到了增强。

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