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Numerical analysis of impact-damaged sandwich composites.

机译:冲击破坏的三明治复合材料的数值分析。

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Sandwich structures are used in a wide variety of structural applications due to their relative advantages over other conventional structural materials in terms of improved stability, weight savings, and ease of manufacture and repair. Foreign object impact damage in sandwich composites can result in localized damage to the facings, core, and core-facing interface. Such damage may result in drastic reductions in composite strength, elastic moduli, and durability and damage tolerance characteristics. In this study, physically-motivated numerical models have been developed for predicting the residual strength of impact-damaged sandwich composites comprised of woven-fabric graphite-epoxy facesheets and Nomex honeycomb cores subjected to compression-after-impact loading. Results from non-destructive inspection and destructive sectioning of damaged sandwich panels were used to establish initial conditions for damage (residual facesheet indentation, core crush dimension, etc.) in the numerical analysis. Honeycomb core crush test results were used to establish the nonlinear constitutive behavior for the Nomex core. The influence of initial facesheet property degradation and progressive loss of facesheet structural integrity on the residual strength of impact-damaged sandwich panels was examined. The influence of damage of various types and sizes, specimen geometry, support boundary conditions, and variable material properties on the estimated residual strength is discussed. Facesheet strains from material and geometric nonlinear finite element analyses correlated relatively well with experimentally determined values. Moreover, numerical predictions of residual strength are consistent with experimental observations.; Using a methodology similar to that presented in this work, it may be possible to develop robust residual strength estimates for complex sandwich composite structural components with varying levels of in-service damage. Such studies may facilitate sandwich panel design by providing insight into relationships between material configuration and damage progression that lead to improved damage tolerance characteristics.
机译:三明治结构由于在改善稳定性,减轻重量以及易于制造和维修方面相对于其他常规结构材料具有相对优势,因此被广泛用于各种结构应用中。夹心复合材料中的异物冲击损坏可能会导致饰面,内芯和内芯界面的局部损坏。这样的损坏可能会导致复合材料强度,弹性模量以及耐用性和损坏容忍度的急剧下降。在这项研究中,已经开发了物理激励的数值模型,用于预测受冲击后压缩载荷作用的,由机织石墨-环氧树脂面板和Nomex蜂窝芯构成的冲击损坏的三明治复合材料的残余强度。损坏的夹心板的无损检查和破坏性切片结果用于建立数值分析中的损坏初始条件(残余面板压痕,型芯破碎尺寸等)。蜂窝芯挤压试验结果用于确定Nomex芯的非线性本构行为。检查了初始面板性能下降和面板结构完整性逐渐丧失对受冲击破坏的夹芯板的残余强度的影响。讨论了各种类型和尺寸,样品几何形状,支撑边界条件以及可变材料特性对估计残余强度的影响。来自材料和几何非线性有限元分析的面板应变与实验确定的值相关性相对较好。此外,残余强度的数值预测与实验观察结果一致。使用与本工作中介绍的方法类似的方法,有可能针对在役损伤程度不同的复杂夹芯复合结构构件开发可靠的残余强度估算值。这样的研究可以通过洞察材料构型与损伤进展之间的关系来促进夹心板的设计,从而改善损伤耐受性。

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