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Determination of Fracture Parameters for Multiple Cracks of Laminated Composite Finite Plate

机译:层压复合有限板多裂缝的裂缝参数的测定

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摘要

A predictive method for estimation of stress state at zone of crack tip and assessment of remaining component lifetime depend on the stress intensity factor (SIF). This paper discusses the numerical approach for prediction of first ply failure load (F-L), progressive failure load, SIF and critical SIF for multiple cracks configurations of laminated composite finite plate using finite element method (FEM). The Hashin and Chang failure criterion are incorporated in ABAQUS using subroutine approach user defined field variables (USDFLD) for prediction of progressive fracture response of laminated composite finite plate, which is not directly available in the software. A tensile experiment on laminated composite finite plate with stress concentration is performed to validate the numerically predicted subroutine results, shows excellent agreement. The typical results are presented to examine effect of changing the crack tip distance (S), crack offset distance (H), and stacking fiber angle (theta) on F-L, and SIF .
机译:裂纹尖区估计应力状态的预测方法及其剩余组分寿命的评估取决于应力强度因子(SIF)。本文讨论了使用有限元法(FEM)的层压复合有限平板多裂纹配置的第一帘布损失负载(F-L),逐行故障负载,SIF和关键SIF的数值方法。 Hashin和Chang失败标准在ABAQUS中使用子程序接近用户定义的场变量(USDFLD)(USDFLD),以预测层压复合有限板的渐进式断裂响应,这在软件中不可用于软件。采用应力浓度的层压复合有限平板上的拉伸试验以验证数值预测的子程序结果,显示出优秀的一致性。提出了典型结果以检查在F-L和SIF上改变裂纹尖端距离(S),裂纹偏移距离(H)和堆叠光纤角度(THETA)的效果。

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