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Single- and double-layer aluminum corrugated core sandwiches under quasi-static and dynamic loadings

机译:准静态和动态载荷下的单层和双层铝波纹芯三明治

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摘要

The crushing of single- and double-layer zig-zag trapezoidal corrugated core sandwiches was investigated experimentally and numerically at quasi-static and dynamic rates. The buckling stress of sandwiches increased when the rate increased from quasi-static to dynamic. The increased buckling stresses were ascribed to the micro-inertial effects, which altered the buckling mode of the core from three plastic hinges to higher number of plastic hinge formations. The initial buckling stress was numerically shown to be imperfection sensitive when the imperfection size was comparable with the buckling length. The numerical buckling stresses of zig-zag and straight corrugated cores were similar, while higher inertial effects were found in triangular corrugated core.
机译:以准静态和动态速率通过实验和数值研究了单层和双层之字形梯形瓦楞芯夹心的破碎情况。当速率从准静态增加到动态时,三明治的屈曲应力增加。屈曲应力的增加归因于微惯性效应,这种效应将铁心的屈曲模式从三个塑料铰链改变为更多数量的塑料铰链结构。当缺陷尺寸与屈曲长度相当时,初始屈曲应力在数值上显示为对缺陷敏感。之字形和直形波纹状铁心的屈曲应力数值相似,而三角形波纹状铁心的惯性效应更高。

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