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Experimental and numerical characterization of Mode I fracture in unidirectional CFRP laminated composite using XIGA-CZM approach

机译:XIGA-CZM方法的单向CFRP层压复合材料在单向CFRP层压复合材料中的实验和数值表征

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This article presents an effective study for characterization of interlaminar Mode I fracture process zone (FPZ) in unidirectional CFRP laminated composite structure. Mode I fracture toughness testing has been carried out on double cantilever beam (DCB) specimens. Experimental studies have been carried out on non-precraked DCB specimens in order to obtain the amount of energy released during crack initiation from the natural crack front. The energy release rate (ERR) is obtained from experimental data as a function of crack growth (Delta a) and pre-crack tip opening displacement (delta*) by utilizing five data reduction schemes. The analytical function between ERR and delta* is used to construct fibre bridging law using J-integral approach. The obtained traction separation laws from each data reduction scheme is implemented into cohesive zone modelling (CZM) for numerical simulation. Fractured surfaces have been examined by means of Scanning electron microscope (SEM). Numerical studies have been carried out for both non-precracked and precracked specimens using combined framework of fracture mechanics using extended isogeometric analysis (XIGA) and damage mechanics using CZM approach. It has been observed that crack travels catastrophically in non-precracked (NPC) specimens due to fast dissipation of excess energy. Introduction of fibre bridging law, obtained from experimental investigation, into CZM in combined framework of XIGA methodology shows a good agreement with experimental results.
机译:本文介绍了在单向CFRP层压复合结构中表征InterlaMAR模式I断裂过程区(FPZ)的有效研究。模式I断裂韧性测试已经在双悬臂梁(DCB)样本上进行。已经在非预先铺设的DCB样本上进行了实验研究,以获得在从天然裂缝前沿裂解期间释放的能量的量。通过利用五种数据降低方案,从实验数据从实验数据获得从实验数据获得的实验数据和预裂纹尖端打开位移(DELTA *)。 ERR和DELTA *之间的分析功能用于使用J-Integral方法构建光纤桥接法。来自每个数据还原方案的获得的牵引分离法实施到粘结区建模(CZM)中,用于数值模拟。通过扫描电子显微镜(SEM)检查了裂缝表面。使用延长的异诊测分析(XIGA)和使用CZM方法的损伤力学,对非预裂和预焊试样进行了数值研究。已经观察到,由于快速耗散过量的能量,裂缝在非预粘的(NPC)标本中行进。从实验研究中获得的纤维桥接法引入,进入西达方法组合框架中的CZM,表现出与实验结果的良好一致性。

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