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Quasi-static bearing failure of CFRP composite in biaxially loaded bolted joints

机译:双轴载荷螺栓连接中CFRP复合材料的准静态轴承破坏

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Hybrid composite-aluminium bolted joints develop internal loads at elevated temperatures, due to the difference in thermal expansion properties of their constituent materials. In aircraft joints, the thermally induced bolt loads are commonly directed perpendicular to the mechanical loads, inducing a biaxial bearing load state. In this work, carbon-epoxy laminate specimens were tested in uniaxial and biaxial quasi-static bearing failure experiments in a specially designed test rig, at elevated temperature. A microscopy study of a failed specimen revealed that the failure process was mainly driven by fibre kinking, although extensive matrix cracking and delaminations were also found. The experiments were simulated by three-dimensional, explicit, finite element analyses, which included intralaminar damage and delamination. The experimental and simulated bearing failure loads differed by 1.7% in the uniaxial case and 2.1% in the biaxial case. It was suggested that the load-displacement response is influenced by the interaction of all damage mechanisms. Delamination modelling was, however, not essential for the prediction of the maximal bearing strength. The same effective bearing strengths were obtained for the biaxially loaded specimens as for the uniaxially loaded ones, but the damage accumulation process and the resulting damage distributions were different. (C) 2015 Elsevier Ltd. All rights reserved.
机译:混合复合铝螺栓连接由于其组成材料的热膨胀特性不同而在高温下产生内部载荷。在飞机关节中,热感应螺栓载荷通常垂直于机械载荷定向,从而引起双轴轴承载荷状态。在这项工作中,碳环氧层压板样品在专门设计的测试装置中在高温下进行了单轴和双轴准静态轴承失效试验。对失败的标本进行的显微镜研究表明,尽管也发现了广泛的基体开裂和分层,但失败的过程主要是由纤维的扭结驱动的。通过三维,显式,有限元分析对实验进行了模拟,其中包括层内损伤和分层。实验和模拟的轴承失效载荷在单轴情况下相差1.7%,在双轴情况下相差2.1%。有人提出,荷载-位移响应受所有损伤机制相互作用的影响。但是,分层模型对于最大轴承强度的预测并不是必需的。双轴加载的试样获得的有效承载强度与单轴加载的试样相同,但损伤累积过程和所得损伤分布不同。 (C)2015 Elsevier Ltd.保留所有权利。

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