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Finite Strip Analysis of Cracked Laminate: Stress Based Plane Strain Approach

机译:裂纹层压板的有限条分析:基于应力的平面应变方法

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Stress based finite strip model is developed for analysis of cracked laminate. Plane strain state is assumed and finite strip method is formulated. Total complementary potential energy is minimized and fourth order Euler Lagrange governing equations are presented. This stress based plane strain approach analyzes general lay up and loading conditions. It provides flexibility to control the number of finite strip nodal lines within each lamina hence stress behavior can be predicted across each lamina at desired location of the structure. It enhances the capability of stress based approach by differentiating stress behavior near and away from the crack tip. Boundary conditions including natural boundary conditions are imposed appropriately to solve governing Euler’s equations. Results from this current semi analytical model are compared with analytical models available in literature. These are also compared with already available generalized plane strain based finite strip model for cracked laminate which evaluates displacements as unknowns by minimizing total potential energy. This work has extended the analysis of the cracked laminate by developing it with stress based finite strip approach which is applicable to any layup including non cross ply structures. Limitations of this model due to plane strain approach are discussed and results are compared with array of examples from the available literature.
机译:开发了基于应力的有限带式模型,用于分析裂纹层压板。假设平面应变状态并配制有限带法。总互补势能是最小化的,并提出了四阶欧拉拉格朗兰语控式方程。基于应力的平面应变方法分析一般放置和装载条件。它提供了灵活性来控制每个薄层内部的有限剥离节点线的数量,因此可以在结构的所需位置预测每个椎板上的应力行为。它通过区分裂缝尖端附近和远离裂缝的应力行为来增强基于应力的方法的能力。适当地施加包括自然边界条件的边界条件,以解决控制欧拉方程。该电流半分析模型的结果与文献中可用的分析模型进行比较。这些也与已经可用的广义平面应变的有限带模型进行了比较,用于裂缝层压板,通过最小化总势能来评估位移作为未知的位移。通过用基于应力的有限带方法开发裂纹层压材料的这种工作延长了裂纹层压板的分析,这适用于包括非交叉层结构的任何叠加。讨论了由于平面应变方法的这种模型的限制,并将结果与​​来自可用文献的示例阵列进行比较。

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