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首页> 外文期刊>Advanced Composite Materials: The Official Journal of the Japan Society of Composite Materials >Prediction of the stiffness degradation in cross-ply laminates due to transverse matrix-cracking: an energy method approach
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Prediction of the stiffness degradation in cross-ply laminates due to transverse matrix-cracking: an energy method approach

机译:由于横向基体开裂而导致的交叉层压板的刚度下降的预测:一种能量方法

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This study deals with transverse cracking in cross-ply laminates. A fracture mechanics analysis, using a strain energy based criterion, was used to model the onset of transverse matrix cracking, and the conditions for further damage development. An admissible displacement field, involving unknown functions was assumed, and the principle of minimum potential energy was used to establish these functions. The crack front shape was a part of the assumed displacement field, thus making it possible to minimise the strain energy with respect to the crack opening displacement function. In this paper the aim was to establish a solution to the transverse cracking problem, to use later in a numerical procedure for the viscoelastic damage predictions for a cross-ply laminate. The model accounts for residual stresses. A number of finite element solutions were performed to verify the accuracy of the presented analytical solution. Predictions of stiffness degradation due to matrix cracking, and matrix cracking as a function of applied stress are presented. [References: 32]
机译:这项研究涉及交叉层压板的横向开裂。使用基于应变能的准则进行断裂力学分析,以模拟横向基体开裂的发生以及进一步破坏发展的条件。假定了一个包含未知函数的容许位移场,并使用最小势能原理建立了这些函数。裂纹前部形状是假定的位移场的一部分,因此可以相对于裂纹开口位移函数使应变能最小化。本文的目的是建立一个解决横向开裂问题的方法,以便稍后在数值程序中用于预测交叉层压板的粘弹性损伤。该模型考虑了残余应力。进行了许多有限元解,以验证所提出的解析解的准确性。提出了由于基体开裂而引起的刚度降低的预测,以及基体开裂作为施加应力的函数。 [参考:32]

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