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Study of stress intensity factor of a cracked steel plate with a single-side CFRP composite patching

机译:单面CFRP复合修补裂纹钢板的应力强度因子研究

摘要

Composite fiber patching techniques have been considered as alternatives to traditional methods of strengthening and fatigue crack repair in steel structures. It is known that the fatigue strength of a cracked steel element depends on the stress intensity factor (SIF) at the crack tip which is a function of the stress/strain distribution of the plate. This paper presents an experimental study of tension tests of cracked steel plates repaired by single-side carbon fiber-reinforced polymer (CFRP) patching in investigating the strain distribution in the vicinity of the cracked region. The test parameters included patch length, patch width, tapered end, and axial stiffness ratio of adherend. It is shown from the test results that the single-side CFRP patching applied onto the cracked steel plate decreased the crack tip strains significantly in the patched face and increased the strains in the unpatched face. Finite-element analyses of the specimens using both the three layers model proposed by previous researchers and a modified three layers model proposed in this study were conducted to examine the strain distributions in the vicinity of the crack. In general, the strain distributions of the specimens were predicted well by the finite-element analyses using either model. The finite-element results showed that the SIF at the crack tip through the plate thickness was significantly reduced except on the unpatched side and the modified three layers model was able to capture the nonlinear SIF variation through the thickness of a cracked steel plate with single-side patching. Meanwhile, the three layers model overestimated the SIF on the patched side and underestimated the SIF on the unpatched side by about 10% on average compared to those of the modified three layers model. Based on the finite-element analysis results of the modified three layers model, it is shown that the width and the length of patching had only a marginal effect on the SIF. On the other hand, the effect of the number of layers of patching on the reduction of SIF was more pronounced.
机译:复合纤维修补技术已被认为是钢结构中传统的加强和疲劳裂纹修复方法的替代方法。众所周知,裂纹钢元件的疲劳强度取决于裂纹尖端的应力强度因子(SIF),该应力强度因子是板的应力/应变分布的函数。本文研究了用单面碳纤维增强聚合物(CFRP)修补修复的裂纹钢板的拉伸试验,以研究裂纹区域附近的应变分布。测试参数包括贴片长度,贴片宽度,锥形端和被粘物的轴向刚度比。从测试结果可以看出,在开裂钢板上施加单面CFRP修补可显着降低修补面的裂纹尖端应变,并增加未修补面的应变。使用先前研究人员提出的三层模型和本研究提出的改进的三层模型对试样进行有限元分析,以检查裂纹附近的应变分布。通常,通过使用这两种模型的有限元分析可以很好地预测样品的应变分布。有限元结果表明,除未修补面外,裂纹尖端沿板厚的SIF均显着降低,并且改进的三层模型能够捕获单层裂纹钢板在整个板厚中的非线性SIF变化。侧面修补。同时,与修改后的三层模型相比,三层模型平均高估了修补侧的SIF,而低估了未修补侧的SIF平均约10%。根据修改后的三层模型的有限元分析结果,表明修补的宽度和长度对SIF仅有边际影响。另一方面,补丁层数对SIF降低的影响更明显。

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