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Simulation of Fatigue Damage in Quasi-Isotropic Open-Hole Tension Coupon using the Kinetic Theory of Fracture

机译:用断裂动力学理论模拟准各向同性开孔张力联轴器的疲劳损伤

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Progressive failure simulations of a quasi-isotropic laminate in open-hole configuration subject to constant amplitude tension-tension fatigue loading are conducted as part of the Damage Tolerant Design Principles program organized by the Air Force Research Laboratory. The laminate is made from unidirectional IM7/977-3 plies, which are composed of intermediate modulus carbon fibers and a toughened epoxy matrix. The simulated behavior of the material was characterized using fatigue loaded unnotched coupon data that was government furnished and the commercial software Autodesk Helius PFA was used to model the non-linear response of the material. Results from blind simulations were benchmarked against experimental measurements and X-rays. A second round of simulations was conducted where the modeling strategy was modified to improve correlation with experiment.
机译:作为由空军研究实验室组织的“损伤容忍设计原则”计划的一部分,对开孔构型的准各向同性层压板进行了渐进式失效模拟,以承受恒定振幅的拉伸-拉伸疲劳载荷。层压板由单向IM7 / 977-3层制成,该层由中模量碳纤维和增韧的环氧基质组成。使用政府提供的疲劳加载的无缺口试样数据来表征材料的模拟行为,并使用商业软件Autodesk Helius PFA对材料的非线性响应进行建模。盲模拟的结果以实验测量和X射线为基准。进行了第二轮仿真,其中修改了建模策略以改善与实验的相关性。

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