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Proof Test Methodology for Reducing the Risk of Unvented Honeycomb Core Failures in Aerospace Structures

机译:证明试验方法降低航空航天结构中未经常用蜂窝核心故障的风险

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The trapped air in unvented honeycomb core and the surrounding environment can induce a pressure differential across the facesheet during launch ascent. Combined with the presence of a defect, the pressure differential across a facesheet in combination with external loads can cause facesheet failure or unstable facesheet debond growth. While honeycomb core venting is the recommended solution, there might be practical limitations in implementing this solution or the possibility that a structure intended to be vented is partially unvented due to manufacturing issues. A methodology for accepting composite sandwich structures for space applications is presented, which heavily relies on the building block approach to characterize the facesheet strength and interfacial fracture toughness. To demonstrate the approach, an allowable flaw size is defined for a hypothetical flight condition using analyses anchored to subscale tests.
机译:在未经辩护的蜂窝芯和周围环境中的捕获空气可以在发射上升期间在整个面板上引起压差。结合存在缺陷的存在,与外部负载组合的面板上的压差可能导致面表失败或不稳定的面表借方生长。虽然蜂窝核心通风是推荐的解决方案,但在实现这种解决方案方面可能存在实际限制,或者可能由于制造问题而被部分地不辩护的结构的可能性。提出了一种接受用于空间应用的复合夹层结构的方法,这严重依赖于构建块方法来表征面板强度和界面裂缝韧性。为了证明这种方法,使用锚定向亚电缆测试的分析来定义允许的缺陷尺寸。

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