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Mode-I, mode-II and mixed-mode I plus II fracture behavior of composite bonded joints: Experimental characterization and numerical simulation

机译:复合粘结接头的I型,II型和I型和II型混合断裂行为:实验表征和数值模拟

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The fracture behavior of composite bonded joints subjected to mode-I, mode-II and mixed-mode I + II loading conditions was characterized by mechanical testing and numerical simulation. The composite adherents were bonded using two different epoxy adhesives; namely, the EA 9695 film adhesive and the mixed EA 9395-EA 9396 paste adhesive. The fracture toughness of the joints was evaluated in terms of the critical energy release rate. Mode-I tests were conducted using the double-cantilever beam specimen, mode-II tests using the end-notch flexure specimen and mixed-mode tests (three mixity ratios) using a combination of the two aforementioned specimens. The fracture behavior of the bonded joints was also simulated using the cohesive zone modeling method aiming to evaluate the method and point out its strengths and weaknesses. The simulations were performed using the explicit FE code LS-DYNA. The experimental results show a considerable scatter which is common for fracture toughness tests. The joints attained with the film adhesive have much larger fracture toughness (by 30-60%) than the joints with the paste adhesive, which exhibited a rather brittle behavior. The simulation results revealed that the cohesive zone modeling method performs well for mode-I load-cases while for mode-II and mixed-mode load-cases, modifications of the input parameters and the traction-separation law are needed in order for the method to effectively simulate the fracture behavior of the joints. (C) 2015 Elsevier Ltd. All rights reserved,
机译:通过力学测试和数值模拟,表征了复合粘结接头在Ⅰ,Ⅱ和Ⅱ+Ⅱ混合载荷下的断裂行为。使用两种不同的环氧粘合剂将复合粘合剂粘合在一起。即EA 9695薄膜粘合剂和EA 9395-EA 9396混合糊状粘合剂。根据临界能量释放速率评估了接头的断裂韧性。使用双悬臂梁样品进行模式I测试,使用端部弯曲挠性样品进行模式II测试,并使用上述两个样品的组合进行混合模式测试(三种混合比)。还使用内聚区建模方法模拟了粘结接头的断裂行为,旨在评估该方法并指出其优缺点。使用显式FE代码LS-DYNA进行仿真。实验结果显示出相当大的分散性,这在断裂韧性测试中很常见。薄膜粘合剂所获得的接缝比糊状粘合剂所具有的接缝具有更大的断裂韧性(30-60%),表现出相当的脆性。仿真结果表明,粘滞区域建模方法在模式I工况下表现良好,而在模式II和混合模式下工况下,需要修改输入参数和牵引分离规律有效地模拟关节的断裂行为。 (C)2015 Elsevier Ltd.保留所有权利,

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