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Characterization and Modelling of Multiple Intralaminar Cracking Initiation under Tensile Quasi-Static and Fatigue Loading

机译:拉伸准静态和疲劳载荷下多腔内静脉曲张裂解起始的特征与建模

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The first failure mode in tensile quasi-static and in tension-tension fatigue (cyclic) loading of composite laminates is intralaminar cracking in layers with off-axis fiber orientation. These tunnel-building cracks are result of combined action of in-plane transverse and shear stresses. We assume that due to non-uniform fiber distribution (clustering) which leads to local stress concentrations, different positions in the layer have different resistance to crack initiation (initiation strength). If so, the weakest position in quasi-static loading is also the weakest in fatigue and some of the distribution parameters for fatigue behavior can be obtained in quasi-static tests, thus significantly reducing the number of required fatigue tests. Methodology is suggested and validated for cases when the cracking is initiation governed- initiated crack almost instantly propagates along fibers. Distribution parameters are identified using data in low crack density region where stress perturbations from cracks do not interact. Monte- Carlo simulations are performed for cracking in layers under quasi-static and cyclic loading using novel approach for computationally efficient stress state calculation between existing cracks.
机译:复合材料层压层的第一种故障模式和张力张力疲劳(环状)加载的复合层压板是具有偏离轴纤维取向的层中的纳入脉冲裂解。这些隧道建筑裂缝是面内横向和剪切应力的组合作用的结果。我们假设由于导致局部应力浓度的非均匀纤维分布(聚类),层中的不同位置具有不同的抗裂炎抗性抗性(起始强度)。如果是,则准静态负载中最弱的位置也是疲劳中最弱的疲劳和一些疲劳行为的分布参数可以在准静态试验中获得,从而显着降低所需疲劳试验的数量。建议并验证了裂缝的裂缝启动治理的方法的方法,几乎​​立即沿纤维传播。使用低裂纹密度区域中的数据识别分布参数,其中来自裂缝的应力扰动不相互作用。使用新方法在现有裂缝之间的计算有效应力状态计算的新静态和循环加载下进行蒙特卡罗模拟。

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