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Stiffened Panels Damage Tolerance Determination using an Optimization Procedure based on a Linear Delamination Growth Approach | Science Publications

机译:使用基于线性分层生长方法的优化程序确定加筋板的损伤容忍度科学出版物

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> >The damage tolerance of delaminated composite panels under compressive load is usually numerically evaluated by means of computationally expensive non-linear approaches. In this study, an alternative numerical linear approach, able to mimic the delamination propagation initiation, is proposed. With the aim to exploit its benefits, in terms of computational costs reduction, the proposed linear methodology has been used in this study in conjunction with an optimization analysis to assess the damage tolerance of stiffened composite panels with an impact induced delamination under compression. Indeed, the optimization was aimed to find the minimum delamination growth initiation load for a delaminated stiffened panel with variable delamination size and position, providing indications on the damage tolerance capability of the stiffened panel with an arbitrary positioned and sized delamination induced (as an example) by a low energy impact.
机译: > >通常采用计算量大的非线性方法,对分层复合板在压缩载荷下的损伤容忍度进行数值评估。在这项研究中,提出了一种替代的数值线性方法,能够模拟分层传播的开始。为了充分利用其好处,在降低计算成本方面,本研究中使用了拟议的线性方法,并结合了优化分析来评估加硬复合板在压缩作用下引起分层的损伤容限。确实,优化的目的是为分层大小和位置可变的分层加筋板找到最小的分层生长起始载荷,从而提供关于任意位置和尺寸引起的分层的加筋板的损伤承受能力的指示(例如)受低能量的影响。

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