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A bi-phasic modelling approach for interlaminar and intralaminar damage in the matrix of composite laminates

机译:复合材料层合板中层间和层内损伤的双相建模方法

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The paper presents a new bi-phasic approach to model delamination and transverse cracking in the matrix of composite laminates by using a single constitutive law, based on a decomposition of the composite stiffness properties into idealized fibre and matrix phases. The decomposition is used in finite element models where membrane elements representing the fibre phase are embedded in a three-dimensional mesh that models the matrix phase. A single constitutive law is applied to the matrix phase by combining a Cohesive Zone Model, which models delamination between plies, with an intralaminar damage law, aimed at modelling a transverse matrix cracking within the plies. All the theoretical aspects of decomposition and constitutive law are described. Then, the numerical experimental correlations are presented considering delamination tests and the evolution of the transverse matrix cracking in cross-ply specimens, with a statistical distribution of strength properties, also in the presence of interactions between matrix cracking and delamination. The approach provides the possibility to efficiently simulate both individual delaminations and transverse cracks with a model using a single layer of elements per ply, without introducing interface elements. Moreover, it also provides new possibilities to control the interaction between intralaminar and interlaminar damage phenomena.
机译:本文基于复合刚度特性分解为理想纤维相和基体相的基础上,提出了一种新的双相方法,该方法通过使用单一本构定律来对复合材料层压板的基体中的分层和横向裂纹进行建模。分解用于有限元模型,其中将代表纤维相的膜元素嵌入到对基质相进行建模的三维网格中。通过将粘合层模型(层之间的分层建模)与层内损伤定律(旨在模拟层内横向矩阵开裂)相结合,可以将单个本构律应用于基体相。描述了分解和本构律的所有理论方面。然后,提出了数值实验相关性,其中考虑了分层试验和交叉层试样中横向基体开裂的演变,具有强度特性的统计分布,并且还存在基体开裂和脱层之间的相互作用。该方法提供了使用每层单层元素的模型有效模拟单个分层和横向裂纹的可能性,而无需引入界面元素。而且,它还提供了控制层内和层间破坏现象之间相互作用的新可能性。

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