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A critical review of available composite damage growth test data under fatigue loading and implications for aircraft sustainment

机译:在疲劳载荷下对可用复合材料损伤增长测试数据的严格审查及其对飞机维持性的影响

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摘要

With growing interest in moving towards a slow-growth design or in-service sustainment basis for aircraft composite and bonded structures, there is a need to establish whether the growth of typical damage in such structure under fatigue loading is systematic and therefore predicable. To this end this paper presents test data from the available literature and draws some general conclusions from this review. The results, which were mainly from aerospace grade carbon/epoxy material systems support the hypothesis that damage growth in composites is a function of applied fatigue cycles and evolves systematically. Also, simple damage metrics retrievable from field level non-destructive inspection are able to capture some, and possibly in some cases, the majority, of the physical nature of the evolution. The work herein sets the foundation for the development of deployable bridged-scale assessments of the effect of damage on the residual static strength and durability performance of composite aircraft structure to support airworthiness decision making.
机译:随着人们越来越关注飞机复合材料和粘合结构的缓慢增长设计或在役维持基础,需要确定这种结构在疲劳载荷下的典型损伤的增长是否是系统的,因此是可预测的。为此,本文介绍了现有文献中的测试数据,并从本综述中得出了一些一般性结论。该结果主要来自航空航天级碳/环氧树脂材料系统,支持以下假设:复合材料中的损伤增长是所施加疲劳周期的函数,并且会系统地演化。同样,可以从现场级无损检查中获取的简单破坏指标能够捕获演变过程的物理性质的某些(在某些情况下可能是大多数)。本文的工作为开发可展开的桥接比例评估提供了基础,该评估可评估损害对复合飞机结构的残余静态强度和耐久性能的影响,以支持适航决策。

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