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Structural Analysis of the Redesigned Ice/Frost Ramp Bracket

机译:重新设计的冰霜坡道支架的结构分析

摘要

This paper describes the interim structural analysis of a redesigned Ice/Frost Ramp bracket for the Space Shuttle External Tank (ET). The proposed redesigned bracket consists of mounts for attachment to the ET wall, supports for the electronic/instrument cables and propellant repressurization lines that run along the ET, an upper plate, a lower plate, and complex bolted connections. The eight nominal bolted connections are considered critical in the summarized structural analysis. Each bolted connection contains a bolt, a nut, four washers, and a non-metallic spacer and block that are designed for thermal insulation. A three-dimensional (3D) finite element model of the bracket is developed using solid 10-node tetrahedral elements. The loading provided by the ET Project is used in the analysis. Because of the complexities associated with accurately modeling the bolted connections in the bracket, the analysis is performed using a global/local analysis procedure. The finite element analysis of the bracket identifies one of the eight bolted connections as having high stress concentrations. A local area of the bracket surrounding this bolted connection is extracted from the global model and used as a local model. Within the local model, the various components of the bolted connection are refined, and contact is introduced along the appropriate interfaces determined by the analysts. The deformations from the global model are applied as boundary conditions to the local model. The results from the global/local analysis show that while the stresses in the bolts are well within yield, the spacers fail due to compression. The primary objective of the interim structural analysis is to show concept viability for static thermal testing. The proposed design concept would undergo continued design optimization to address the identified analytical assumptions and concept shortcomings, assuming successful thermal testing.
机译:本文介绍了重新设计的航天飞机外部储罐(ET)的冰霜护板支架的临时结构分析。提议的重新设计的支架包括用于连接至ET壁的安装架,用于沿ET延伸的电子/仪表电缆和推进剂加压管线的支撑件,上板,下板以及复杂的螺栓连接。在汇总的结构分析中,八个名义上的螺栓连接被认为是至关重要的。每个螺栓连接均包含一个螺栓,一个螺母,四个垫圈以及一个用于隔热的非金属垫片和块。使用实体的10节点四面体单元开发了支架的三维(3D)有限元模型。分析中使用了ET项目提供的负载。由于与精确建模支架中的螺栓连接相关的复杂性,因此使用全局/局部分析过程来执行分析。支架的有限元分析确定了八个螺栓连接之一具有较高的应力集中。从全局模型中提取围绕此螺栓连接的支架的局部区域,并将其用作局部模型。在本地模型中,对螺栓连接的各个组成部分进行了改进,并沿分析人员确定的适当接口引入了接触。全局模型的变形作为边界条件应用于局部模型。整体/局部分析的结果表明,尽管螺栓中的应力完全在屈服范围内,但垫片会由于压缩而失效。临时结构分析的主要目的是证明静态热测试的概念可行性。假设成功进行了热测试,则所提出的设计概念将进行持续的设计优化,以解决已确定的分析假设和概念缺陷。

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