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Buckling of long thin plates under residual stresses with application to strip rolling

机译:在残余胁迫下屈曲的长薄板,施用剥离滚动

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We present a simplified numerical method which can be used to predict efficiently the response of long thin plates under effects of residual stresses induced by production process such as rolling or continuous annealing. The principle consists in assuming harmonic buckling mode along the sheet length, and we consider Koiter-Budiansky post-buckling theory to compute the stress-deflection curve. In this way, only the width of the sheet has to be discretized by ID finite elements. The size and shape of the flatness defects can be predicted efficiently and for a large number of cases. Various types of residual stresses and loadings can be accounted for. In particular, we will see the influence of the global traction on the buckling and post-buckling behavior. The numerical results are compared with experimental data and full numerical computations
机译:我们介绍了一种简化的数值方法,该数字方法可用于预测通过生产过程诱导的残余应力的影响,例如轧制或连续退火的影响下的长薄板的响应。该原理包括假设沿着纸张长度的谐波屈曲模式,并且我们认为Koiter-Budiansky后屈曲理论来计算应力偏转曲线。以这种方式,仅通过ID有限元件离散化纸张的宽度。可以有效地预测平坦度缺陷的尺寸和形状,并且用于大量情况。可以考虑各种类型的残余应力和负载。特别是,我们将看到全球牵引对屈曲和后屈曲行为的影响。将数值结果与实验数据和全价计算进行比较

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