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Structural optimization of an alternate design for the space shuttle solid rocket booster field joint

机译:航天飞机固体火箭助推器野战接头替代设计的结构优化

摘要

A structural optimization procedure is used to determine the shape of an alternate design for the shuttle solid rocket booster field joint. In contrast to the tang and clevis design of the existing joint, this alternate design consists of two flanges bolted together. Configurations with 150 studs of 1 1/8 in. diameter and 135 studs of 1 3/16 in. diameter are considered. Using a nonlinear programming procedure, the joint weight is minimized under constraints on either von Mises or maximum normal stresses, joint opening and geometry. The procedure solves the design problem by replacing it by a sequence of approximate (convex) subproblems; the pattern of contact between the joint halves is determined every few cycles by a nonliner displacement analysis. The minimum weight design has 135 studs of 1 3/16 in. diameter and is designed under constraints on normal stresses. It weighs 1144 lb per joint more than the current tang and clevis design.
机译:结构优化程序用于确定航天飞机固体火箭助推器野战接头的替代设计的形状。与现有接头的“ Tang”和“ U”形设计不同,该替代设计由两个螺栓连接在一起的法兰组成。考虑具有150个直径为1 1/8英寸的螺柱和135个直径为1 3/16英寸的螺柱的配置。使用非线性编程程序,可以在von Mises约束或最大法向应力,接缝张开和几何形状的约束下将接缝重量最小化。该过程通过用一系列近似(凸)子问题代替它来解决设计问题。通过非线性位移分析,每隔几个周期确定两半之间的接触方式。最小重量设计具有135个1 3/16英寸直径的螺柱,并且在法向应力的约束下进行设计。它比当前的柄脚和U形夹设计重1144磅。

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