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Evolution and influence of residual stresses/strains of fiber reinforced laminates

机译:纤维增强层压板的残余应力/应变的演变及其影响

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This paper presents a meso/micromechanical study of fiber reinforced polymeric matrix cross-ply laminates during and after a high temperature curing process. The emphasis is on the generation and evolution of the curing induced residual stress/strain and their influence on the response under subsequent mechanical loading. The cross-ply laminate is modeled by a representative volume element and the constituent materials are described by an elastic model for the fiber and a non-linear viscoelastic model for the polymer matrix. The residual stress/strain fields at the ambient temperature immediately following the cool-down and their evolution with time are determined through the viscoelastic finite element discretization of the RVE with a special consideration given to the fiber/matrix interface region. The results indicate that the residual stresses decrease with time and tend to small asymptotic values after about 34 h. However, the remaining residual strains still have significant influence on the damage evolution of the cross-ply laminate under subsequently superimposed tensile loading.
机译:本文介绍了高温固化过程中和高温固化后纤维增强聚合物基体交叉层压板的介观/微观力学研究。重点是固化引起的残余应力/应变的产生和演化,以及它们对后续机械载荷下响应的影响。交叉层压材料由代表性的体积元建模,组成材料由纤维的弹性模型和聚合物基体的非线性粘弹性模型描述。冷却后立即在环境温度下产生的残余应力/应变场及其随时间的变化是通过RVE的粘弹性有限元离散化确定的,其中特别考虑了纤维/基体的界面区域。结果表明,残余应力随时间减小,并在约34 h后趋于较小的渐近值。然而,在随后叠加的拉伸载荷下,剩余的残余应变仍对交叉层压板的损伤演变有重大影响。

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