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Determination of J-R curves by load separation criterion in highly ductile TP-based composites under high temperature conditions

机译:TP条件下高延性TP基复合材料在载荷条件下的J-R曲线测定

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摘要

This work was aimed at determining the J-integral in 5-harness satin weave carbon fabrics reinforced PolyPhenylene Sulphide (PPS) structures at 120 degrees C > Tg (glass transition temperature). The use of the linear elastic fracture mechanics (LEFM) framework to investigate the fracture behavior is not relevant in C/PPS laminates whose angle-ply stacking sequence is characterized by a highly ductile behavior. Thus the corresponding strain energy release rate (denoted J) in angle-ply laminates can be evaluated by means of the J-integral to account for the elastic-plastic fracture mechanics (EPFM). To this aim, a particular attention was paid to determine eta(el)- and eta(pl)-factors which are key points in the evaluation of J. eta(el) is classically evaluated using the compliance method, whereas, eta(pl) is determined by means of the load separation method applied to both elastic and total displacements. The comparison between initial crack length calculated using plastic and total displacement allows us to conclude that eta(pl)-factor based on total displacement leads to more accurate results. Using the S-ij parameter, it is therefore possible to estimate transverse crack growths for different initial notch lengths. The predicted crack growth is in a good agreement with the experimental evolution obtained using Digital Image Correlation (DIC). Finally, the present work provides the J-R curves of highly ductile composite systems for different initial crack length over width ratios (a/w).
机译:这项工作旨在确定在120摄氏度> Tg(玻璃化转变温度)下5束缎纹编织碳纤维增强的聚苯硫醚(PPS)结构中的J积分。线性弹性断裂力学(LEFM)框架用于研究断裂行为与C / PPS层压板无关,这些C / PPS层压板的角层堆叠顺序具有高延展性。因此,可以通过J积分评估角膜层合层压板中相应的应变能释放速率(表示为J),以说明弹塑性断裂力学(EPFM)。为此,要特别注意确定eta(el)和eta(pl)因子,这些因子是J评估中的关键点。eta(el)通常使用顺应性方法进行评估,而eta(pl) )是通过应用于弹性位移和总位移的载荷分离方法确定的。使用塑料计算的初始裂纹长度与总位移之间的比较使我们得出结论,基于总位移的eta(pl)因子可得出更准确的结果。因此,使用S-ij参数可以估计不同初始缺口长度的横向裂纹扩展。预测的裂纹扩展与使用数字图像相关性(DIC)获得的实验进展非常吻合。最后,本工作提供了针对不同初始裂纹长度与宽度之比(a / w)的高延性复合材料系统的J-R曲线。

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