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Progressive Fracture in Composite Structures

机译:复合结构的渐进性断裂

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摘要

In this paper an overvies of the research activities related to an approach that has been developed independent of stress intensity factors and fracture toughness aprameters is presented for the computational simulation of progressive fracture in polymer-matrix composite structures. The damage stages are quantified based on physics via composite mechanics while the degradation of the structural behavior is quantified via the finite element method. The approach accunts for all types of composite behavior, structures. load conditions, and fracture processes starting from damage initiation, to unstable propagation and to glabal structure collapse. Results of structural fracture in composite plates, shells and built-up structures are presented to demonstrate the effectiveness and versatility of this approach. Parameters/guidelines are identified that can be used as criteria for structural fracture, inspection intervals, and retirement for cause. Generalization to structures made of any or combinations of materials are outlined, and lessons learned in undertaking the development of computational simulation approaches, in generar, are summarized.
机译:本文概述了与一种方法无关的研究活动,该方法独立于应力强度因子和断裂韧性参数而开发,用于聚合物基复合材料结构中渐进断裂的计算模拟。损伤阶段根据物理原理通过复合力学进行量化,而结构行为的退化则通过有限元方法进行量化。该方法指责所有类型的复合行为,结构。载荷条件,以及从破坏开始到不稳定传播以及舌状结构塌陷的断裂过程。提出了复合板,壳和组合结构中结构破裂的结果,以证明这种方法的有效性和多功能性。确定的参数/准则可用作结构断裂,检查间隔和原因退役的标准。概述了由任何材料或材料组合制成的结构的一般化,并概括了在进行计算仿真方法开发时吸取的经验教训。

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