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Elastic-Plastic Nonlinear Response of a Space Shuttle External Tank Stringer: Part 1 - Stringer-Feet Imperfections and Assembly

机译:Speed Shuttle外部坦克刺指唱团的弹性塑料非线性响应:第1部分 - 梯形脚缺陷和组装

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Elastic-plastic, large-deflection nonlinear stress analyses are performed for the external hat-shaped stringers (or stiffeners) on the intertank portion of the Space Shuttle's external tank. These stringers are subjected to assembly strains when the stringers are initially installed on an intertank panel. Four different stringer-feet configurations including the baseline flat-feet, the heels-up, the diving-board, and the toes-up configurations are considered. The assembly procedure is analytically simulated for each of these stringer configurations. The location, size, and amplitude of the strain field associated with the stringer assembly are sensitive to the assumed geometry and assembly procedure. The von Mises stress distributions from these simulations indicate that localized plasticity will develop around the first eight fasteners for each stringer-feet configuration examined. However, only the toes-up configuration resulted in high assembly hoop strains.
机译:弹性塑料,对空间梭式外部罐的间隔部分上的外部帽子纵梁(或加强筋)进行了弹性塑料的大偏转非线性应力分析。当串最初安装在Intertrank Panel上时,这些桁条遭到组装株。考虑了四种不同的叉形脚配置,包括基线平脚,脚跟,潜水板和脚趾配置。对于这些纵梁配置中的每一个进行分析模拟组装过程。与纵梁组件相关联的应变场的位置,尺寸和幅度对假定的几何和组装过程敏感。这些模拟中的von误导应力分布表明,局部可塑性将在所检查的每个螺杆配置的前八个紧固件周围发生。然而,只有脚趾配置导致高装配箍菌株。

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