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Method for Analyzing the Effect of Fiber Bridging on the Stress Field in the Vicinity of Crack Double Cantilever Beam Specimen of Unidirectional Fiber Reinforced Composite

机译:单向纤维增强复合材料裂纹双悬臂梁附近纤维桥接对应力场影响的分析方法

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摘要

A simple method for evaluating the effect of fiberbridging on the stress field in the vicinity of a crack tip in DoubleCantilever Beam (DCB) specimen of unidirectional fiberreinforced composite was proposed. In this method, each bridgingfiber was approximated by a beam, and the force and momentacting on the fiber was calculated using conventional beam theory.Stress intensity factor at the crack tip was evaluated by means ofthe finite element method taking into account the axial force andbending moment carried by the bridging fibers. The analysis wascarried out for several types of bridgings. Results of the analysisshowed that shorter fiber and/or the fiber situated more behind thecrack tip reduced the stress intensity factor much, because thosefibers were thought to the subjected to large displacement andbrought about large force in crack closing direction. Moreover,when bundled fibers bridged the crack, i.e., when the bridgingfibers were connected and deformed as one composite beam,reduction in stress intensity factor was striking. This shows thatbundling of bridging fibers plays an important role in stress shielding.
机译:提出了一种简单的方法来评估纤维桥接对单向纤维增强复合材料双悬臂梁(DCB)试样裂纹尖端附近应力场的影响。在这种方法中,每根桥接纤维都用一根梁近似,并用传统的梁理论计算在纤维上的作用力和力矩。考虑轴向力和弯矩,采用有限元方法评估裂纹尖端的应力强度因子。由桥接纤维承载。对几种类型的桥接进行了分析。分析结果表明,较短的纤维和/或位于裂纹尖端后方的纤维会大大降低应力强度因子,因为认为这些纤维承受大的位移,并在裂纹闭合方向施加较大的力。而且,当捆扎的纤维桥接裂缝时,即当桥接纤维被连接并作为一个复合梁变形时,应力强度因子的减小显着。这表明桥接纤维的束缚在应力屏蔽中起重要作用。

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