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Mode II dominant fracture of layered composite beams and wide-plates: a homogenized structural approach

机译:层叠层叠梁和宽板的主要骨折:均质结构方法

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Brittle delamination fracture under Mode II dominant conditions in unidirectional composite and layered beams and wide-plates is studied using a homogenized structural model based on a zigzag approach. The model captures the unstable propagation of cracks, snap-back and snap-through instabilities, the effects of the interaction of multiple cracks on the macrostructural response and of the layered structure on the energy release rate. The layered structure and the delaminations are described by introducing local enrichments, in the form of zigzag functions and cohesive interfaces, to a classical first-order shear deformation plate theory. The model applies to layers with principal material directions parallel to the geometrical axes, depends on only three displacement variables and the solution of specific problems requires only in-plane discretization, for any numbers of layers and delaminations. Closed form solutions are derived for the energy release rate in bi-material beams and applications are presented to homogeneous, bi-material and layered, simply supported and cantilever, bend-beams, with one and two delaminations.
机译:使用基于Zigzag方法的均质结构模型研究了单向复合材料和分层梁和宽板的模式II下的脆性分层裂缝和宽板。该模型捕获了裂缝,快速和快息和快速稳定性的不稳定传播,多个裂缝对宏观结构响应的相互作用和分层结构对能量释放率的影响。通过以Z字形函数和粘性接口的形式引入局部富集来描述层状结构和分层,以古典一阶剪切变形板理论。该模型适用于具有与几何轴平行的主物质方向的层,仅取决于三个位移变量,并且特定问题的解决方案只需要面内离散化,任何数量的层次和分层都需要面内离散化。封闭形式的溶液衍生用于双材料束中的能量释放速率,并且将应用呈现给均匀,双材料和层状的,简单地支撑的和悬臂,弯曲梁,其中一个和两个分层。

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