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Influence of the Arrangement of Mechanical Fasteners on the Static Strength and Fatigue Life of Hybrid Joints

机译:机械紧固件排列对杂交关节静力和疲劳寿命的影响

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摘要

This paper presents the results of experimental research and numerical calculations regarding the static strength and fatigue life of hybrid joints. In the experiments, specimens built as single-lap adhesive–mechanical joints (hybrid joints) were tested. In a two-stage process of the failure of the hybrid joints, the adhesive joint was damaged first. Therefore, it was assumed that the assembly of fasteners closer to the edge of the overlap (beyond the ranges recommended for mechanical joints) limits the negative impact of the peeling phenomenon on the strength and performance properties of hybrid joints. The specimens used in the experiments were prepared from composite elements (i.e., carbon fiber-reinforced polymer (CFRP)), as well as from the aluminum alloy 2024T4. Because the detection of fatigue damage in composite materials is a complex problem, computed tomography was used to evaluate the degradation of the composite material. Experimental and numerical comparative analyses of the static strength and fatigue life of hybrid joints with adhesive and mechanical joints confirmed the assumptions made.
机译:本文介绍了关于杂交关节静态强度和疲劳寿命的实验研究和数值计算的结果。在实验中,测试了作为单圈粘合机械接头(混合接头)的标本。在混合接头的失效的两级过程中,粘合剂接头首先受损。因此,假设紧固件的组装更靠近重叠的边缘(超出机械接头的范围)限制了剥离现象对混合接头的强度和性能性能的负面影响。实验中使用的标本由复合元件(即,碳纤维增强聚合物(CFRP))以及铝合金2024t4制备。因为复合材料中疲劳损坏的检测是复杂的问题,所以使用计算的层析造影来评估复合材料的劣化。用粘合剂和机械接头静态关节静力强度和疲劳寿命的实验性和数值对比分析证实了假设。

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