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Strength Assessment of Rectangular Plates Subjected to Extreme Cyclic Load Reversals

机译:强度评估矩形板受到极端循环载荷逆转的影响

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摘要

The objective of this study is to investigate the strength of the rectangular plates subjected to cyclic load reversals with varying strain ranges. The finite element solution is implemented to estimate the load-carrying capacity. The influence of the initial imperfections, plate thicknesses and aspect ratio parameters have been accounted for. The cyclic response is predicted by using the material model assumed to follow the combined non-linear isotropic and kinematic strain hardening rules with Von Misses yield criterion accounting for the Bauschinger effect. It has been shown that the type of plastic formation during the cyclic load has a significant influence on the structural capacity and stiffness reduction. The initial imperfection has a significant impact on the ultimate load capacity reduction where the uni-modal initial imperfection type leads to a more stable load transition and plastic formation, reducing the structural capacity during the cyclic load exposure.
机译:本研究的目的是探讨与不同的应变范围进行循环载荷逆转的矩形板的强度。实施有限元解决方案以估计承载承载能力。初始缺陷,板厚度和纵横比参数的影响已经占了。通过使用假定的材料模型来预测循环响应,以遵循组合的非线性各向同性和运动应变硬化规则,其中von未命中率为Bauschinger效应核算。已经表明,循环载荷期间的塑料形成类型对结构容量和刚度降低具有显着影响。初始缺陷对最终负载容量的显着影响有显着影响,其中单模型初始缺陷型导致更稳定的负载过渡和塑料形成,降低了循环负荷暴露过程中的结构容量。

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