首页> 外文会议>International Baltimore SAMPE Symposium and Exhibition >INITIATION AND EVOLUTION OF TRANSVERSE MATRIX CRACKS IN COMPOSITE LAMINATES
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INITIATION AND EVOLUTION OF TRANSVERSE MATRIX CRACKS IN COMPOSITE LAMINATES

机译:复合层压板横向矩阵裂缝的启动与演化

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Damage due to matrix cracks in a laminate with symmetric, but otherwise general laminate stacking sequence (LSS) is predicted by a novel analytical solution for the damage activation function and a return mapping algorithm to restore equilibrium upon damage. In order to use Hahn's energy criterion, the strain energy release rates in mode I and II are calculated analytically from novel expressions for the degrading stiffness of a cracking lamina embedded in a laminate. The degrading stiffness is calculated using shear lag analysis of the cracked lamina. Provision for multiple laminae damaging simultaneously under in-plane state of stress/strain is achieved by a modified return mapping algorithm. A novel definition of composite damage model (CDM)-inspired damage variables allows crack density to be used as state variable. The proposed formulation accurately predicts crack initiation, evolution, degraded stiffness, and stress redistribution.
机译:由于具有对称的层压材料中的矩阵裂缝引起的损伤,但是通过用于损坏激活功能的新型分析解决方法和返回映射算法来预测一般层压堆叠序列(LSS),以恢复损坏损坏的返回映射算法。为了使用HAHN的能量标准,模式I和II中的应变能释放速率从新的表达式计算用于嵌入层压板中的裂化薄膜的降解刚度的新表达式。利用裂纹薄片的剪切滞后分析计算降解刚度。通过修改的返回映射算法实现了在面内应力/应变状态下同时进行多层薄片损坏的规定。一种新的复合损伤模型定义(CDM) - 悬浮损伤变量允许用作状态变量的裂缝密度。所提出的制剂精确地预测裂纹引发,进化,降解刚度和应力再分布。

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