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Effects of stacking sequence and clamping force on the bearing strengths of mechanically fastened joints in composite laminates

机译:堆垛顺序和夹紧力对复合材料层合板机械固定接头的承载强度的影响

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摘要

The weakest parts of a composite laminate structure are often the joints. Hence the need to design reliable and efficient load- carrying joints has become increasingly important and the effects of stacking sequence and clamping force on joint strengths have to be clarified. In this study, the effects of stacking sequence and clamping force on delamination bearing strength and ultimate bearing strength of mechanically fastened joints (pinned and bolted) in carbon/epoxy composite laminates were examined using the acoustic emission (AE) technique. Two orthotropic and three quasi-isotropic laminate lay--up configurations and four clamping forces were examined. Based on the experiments, the effects of stacking sequence and clamping force on joint strengths were systematically investigated. Guidelines for effective stacking sequences and maximum clamping forces for mechanically fastened joints in composite laminates are suggested based on delamination bearing strength and ultimate bearing strength.
机译:复合层压板结构中最薄弱的部分通常是接缝。因此,设计可靠而有效的承重接头的需求变得越来越重要,并且必须弄清楚堆垛顺序和夹紧力对接头强度的影响。在这项研究中,使用声发射(AE)技术检查了堆叠顺序和夹持力对碳/环氧复合材料层压板中机械固定接头(销钉和螺栓连接)的分层轴承强度和极限轴承强度的影响。研究了两种正交各向异性和三种准各向同性的层压结构和四种夹持力。在实验的基础上,系统地研究了堆垛顺序和夹紧力对接头强度的影响。根据分层轴承强度和极限轴承强度,建议了复合层压板中机械固定接头的有效堆叠顺序和最大夹紧力的准则。

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