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Failure Modelling of Woven GFRP Bolted Joints under Quasi-Static Loading

机译:准静态载荷作用下编织GFRP螺栓连接接头的失效模型

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Current work concentrates in modelling failure and damage of various woven fabric reinforcement system taken from selected literatures. Experimental observations under quasi-static loading revealed that initial failure occurs at notch vicinity consist of one or combinations of matrix cracking, splitting and laminate de-lamination. The crack then propagated along net-section of distance of about one notch radius size, which thereafter occurrence usually corresponds to catastrophic failures that seen significant tow fractures. The distance of cracked zone signifies ultimate material failure usually referred as “effective damage zone” that useful to be implemented within fracture mechanics concept. These complex morphologies mechanisms can be represented by implementing physically-based constitutive model. Series works of notched woven fabric composite systems plate were implemented within two-dimensional extended finite element method (XFEM) framework were carried out by implementing constitutive models based on basic material properties data of respective system. Good agreement is shown in comparison with experimental data in various and other closed-form approaches composite fabric systems.
机译:当前的工作集中在对选自所选文献的各种机织织物增强系统的失效和损坏进行建模。在准静态载荷下的实验观察表明,初始破坏发生在缺口附近,由基体开裂,劈裂和层压板分层中的一种或组合组成。裂纹然后沿着大约一个缺口半径大小的距离的净截面传播,此后的发生通常对应于灾难性破坏,该破坏发生了明显的丝束断裂。裂纹区域的距离表示最终的材料破坏,通常称为“有效破坏区域”,可在断裂力学概念中实施。这些复杂的形态学机制可以通过实现基于物理的本构模型来表示。在二维扩展有限元方法(XFEM)框架内,基于相应系统的基本材料特性数据,通过实施本构模型,对带缺口的机织物复合系统板进行了一系列工作。与各种和其他封闭形式方法的复合织物系统中的实验数据相比,显示出良好的一致性。

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