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3D Progressive Damage Modeling for Laminated Composite Based on Crack Band Theory and Continuum Damage Mechanics

机译:基于裂缝乐队理论和连续损伤力学的层压复合材料三维逐步损伤模型

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A simple continuum damage mechanics (CDM) based 3D progressive damage analysis (PDA) tool for laminated composites was developed and implemented as a user defined material subroutine to link with a commercially available explicit finite element code. This PDA tool uses linear lamina properties from standard tests, predicts damage initiation with an easy-to-implement Hashin-Rotem failure criteria, and in the damage evolution phase, evaluates the degradation of material properties based on the crack band theory and traction-separation cohesive laws. It follows Matzenmiller et al.’s formulation to incorporate the degrading material properties into the damaged stiffness matrix. Since nonlinear shear and matrix stress-strain relations are not implemented, correction factors are used for slowing the reduction of the damaged shear stiffness terms to reflect the effect of these nonlinearities on the laminate strength predictions. This CDM based PDA tool is implemented as a user defined material (VUMAT) to link with the Abaqus/Explicit code. Strength predictions obtained, using this VUMAT, are correlated with test data for a set of notched specimens under tension and compression loads.
机译:基于简单的连续损伤力学(CDM)的三维逐行损伤分析(PDA)用于层压复合材料的工具,并实现为用户定义的材料子程序,以与市售的明确有限元码链接。该PDA工具采用标准试验的线性薄层特性,预测易于实施的哈希岛 - 轮廓故障标准,并且在损伤进化阶段,基于裂缝频段理论和牵引分离来评估材料性质的降解凝聚性法律。它遵循Matzenmiller等人。的配方将降解的材料特性掺入损坏的刚度基质中。由于未实现非线性剪切和基质应力 - 应变关系,因此校正因子用于减慢损坏的剪切刚度术语的减少,以反映这些非线性对层压强度预测的影响。此基于CDM的PDA工具被实现为用户定义的材料(VUMAT),以与ABAQUS /显式代码链接。使用该VUMAT获得的强度预测与在张力和压缩负载下的一组缺口样品的测试数据相关。

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