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Failure modes of CFRP pre-tightened single tooth joints under axial cyclic tensile loading

机译:CFRP预紧单齿接头在轴向循环拉伸载荷下的破坏模式

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The fatigue behavior of a pre-tightened single tooth (PTST) joint composed of pultruded carbon fiber-reinforced polymer (CFRP) composite lamina and subjected to axial tensile loading was investigated experimentally by conducting fatigue tests and numerically by implementing finite element analysis. The pultruded CFRP composite laminae, however, are prone to interlaminar failure, thus necessitating understanding of the failure mechanism of such joints under a constant amplitude cyclic tensile load. In this work, the fatigue life of joints was obtained, and the failure mechanism was determined. Crack initiation and propagation were described, although the failure was always sudden and brittle. The dominant failure mode for all types of joints was a tooth-shear-off failure that occurred along the tooth root of the CFRP laminae. Independent of the failure mode, similar crack development was observed, characterized by initial and final regions of accelerated instability propagation and a middle interval of linear and slower crack propagation. The ratios of these three stages had significant correlations with the pre-tightening stress level especially at high pre-tightening stress, the middle stage became significantly longer, and the final stage became shorter. Considerable differences were observed for fatigue failure modes under different tooth lengths and pre-tightening stress levels. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过进行疲劳试验并进行有限元分析,通过实验研究了由拉挤碳纤维增强聚合物(CFRP)复合材料薄板构成并承受轴向拉伸载荷的预紧单齿(PTST)接头的疲劳行为。然而,拉挤的CFRP复合材料层板容易发生层间破坏,因此需要了解在恒定振幅的周期性拉伸载荷下这种接头的破坏机理。在这项工作中,获得了接头的疲劳寿命,并确定了失效机理。描述了裂纹的萌生和扩展,尽管破坏总是突然而脆弱的。对于所有类型的关节,主要的失效模式是沿着CFRP薄片齿根发生的牙齿剪切失效。与破坏模式无关,观察到类似的裂纹发展,其特征在于加速不稳定性传播的初始和最终区域以及线性和较慢的裂纹传播的中间间隔。这三个阶段的比率与预紧应力水平具有显着的相关性,尤其是在高预紧应力的情况下,中间阶段明显变长,而最终阶段变短。在不同的齿长和预紧的应力水平下,疲劳失效模式存在明显差异。 (C)2019 Elsevier Ltd.保留所有权利。

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