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Mixed-mode partition theories for one-dimensional delamination in laminated composite beams

机译:层合复合梁一维分层的混合模式分配理论

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Completely analytical theories are presented for the mixed-mode partitioning of one-dimensional delamination in laminated composite beams. The work builds on previous research by the authors on one-dimensional fractures in layered isotropic beams. The par tition theories are developed within the contexts of both Euler and Timoshenko beam the ories. Two sets of orthogonal pairs of pure modes are found and used to partition mixed modes. Approximate 'averaged partition rules' are also established for 2D elasticity. The beam partition theories and averaged rules are extensively validated against numerical simulations using the finite element method (FEM). The contact behavior of double canti lever beams (DCBs) is also investigated. Two types of contact exist: crack tip running con tact, which results in a region of pure mode II; and point contact at the DCB tip, which can result in either in mixed modes or pure mode II.
机译:提出了层合复合梁中一维分层混合模式划分的完整分析理论。该工作建立在作者先前对层状各向同性梁的一维裂缝研究的基础上。划分理论是在Euler和Timoshenko提出的理论中发展起来的。找到两组正交的纯模式对,并将其用于划分混合模式。还为二维弹性建立了近似的“平均划分规则”。使用有限元方法(FEM)通过数值模拟对光束分割理论和平均规则进行了广泛验证。还研究了双悬臂杠杆梁(DCB)的接触行为。存在两种类型的接触:裂纹尖端接触,这导致纯模式II区域;和DCB尖端的点接触,这可能导致混合模式或纯模式II。

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