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Nonlinear Analysis and Post-Test Correlation for a Curved PRSEUS Panel

机译:弯曲的PRSEUS面板的非线性分析和测试后相关

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摘要

The Pultruded Rod Stitched Efficient Unitized Structure (PRSEUS) concept, developed by The Boeing Company, has been extensively studied as part of the National Aeronautics and Space Administration's (NASA s) Environmentally Responsible Aviation (ERA) Program. The PRSEUS concept provides a light-weight alternative to aluminum or traditional composite design concepts and is applicable to traditional-shaped fuselage barrels and wings, as well as advanced configurations such as a hybrid wing body or truss braced wings. Therefore, NASA, the Federal Aviation Administration (FAA) and The Boeing Company partnered in an effort to assess the performance and damage arrestments capabilities of a PRSEUS concept panel using a full-scale curved panel in the FAA Full-Scale Aircraft Structural Test Evaluation and Research (FASTER) facility. Testing was conducted in the FASTER facility by subjecting the panel to axial tension loads applied to the ends of the panel, internal pressure, and combined axial tension and internal pressure loadings. Additionally, reactive hoop loads were applied to the skin and frames of the panel along its edges. The panel successfully supported the required design loads in the pristine condition and with a severed stiffener. The panel also demonstrated that the PRSEUS concept could arrest the progression of damage including crack arrestment and crack turning. This paper presents the nonlinear post-test analysis and correlation with test results for the curved PRSEUS panel. It is shown that nonlinear analysis can accurately calculate the behavior of a PRSEUS panel under tension, pressure and combined loading conditions.
机译:由波音公司开发的拉杆缝合高效联合结构(PRSEUS)概念已作为美国国家航空航天局(NASA)的环境责任航空(ERA)计划的一部分进行了广泛研究。 PRSEUS概念为铝或传统复合设计概念提供了轻巧的替代方案,并适用于传统形状的机身镜筒和机翼,以及高级配置,例如混合机翼或桁架支撑机翼。因此,美国宇航局,联邦航空管理局(FAA)和波音公司合作,在FAA全面飞机结构测试评估和评估中,使用全面弯曲的面板来评估PRSEUS概念面板的性能和损失捕获能力。研究(更快)设施。测试是在FASTER设备中进行的,方法是使面板承受施加在面板端部的轴向拉力,内部压力以及轴向拉力和内部压力的总和。另外,反作用环向载荷沿面板的边缘施加到面板的蒙皮和框架上。面板在原始状态下成功地支撑了所需的设计载荷,并使用了加固的加强筋。专家组还证明,PRSEUS概念可以阻止包括裂纹止动和裂纹车削在内的破坏进程。本文介绍了弯曲的PRSEUS面板的非线性测试后分析以及与测试结果的相关性。结果表明,非线性分析可以准确地计算PRSEUS面板在张力,压力和组合载荷条件下的行为。

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