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Failure prediction of adhesively bonded CFRP-Aluminum alloy joints using cohesive zone model with consideration of temperature effect

机译:考虑温度效应的粘结区模型粘接CFRP - 铝合金接头的故障预测

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摘要

To predict the failure of adhesively bonded CFRP (Carbon Fiber Reinforced Plastics)-aluminum alloy joints applied to High Speed EMU (Electric Multiple Units) more accurately with consideration of temperature influence, a combined experimental-numerical approach is developed in this study. Bulk specimens and adhesive joints, including thick-adherend shear joints(TSJ), scarf joints(SJ) with scarf angle 30 degrees(SJ30 degrees), 45 degrees(SJ45 degrees), and 60 degrees(SJ60 degrees), as well as butt joints(BJ), were manufactured and tested at 23 degrees C (room temperature, RT), 80 degrees C (high temperature, HT) and -40 degrees C (low temperature, LT). Quadratic stress criteria built at different temperatures were introduced in the cohesive zone mode (CZM) to conduct a simulation analysis. Test results suggest that the effects of HT on mechanical properties of adhesive are more obvious than the effects of LT. It is also found that TSJ show the greatest improvements in failure strengths at LT due to the occurrence of cohesive failure, while SJ and BJ tend to develop fiber tears due to the presence of normal stress. Stress distributions of adhesive layer are found to be symmetrical except for the normal stress of SJ. This simulation analysis shows that the prediction accuracy is related to quadratic stress criteria applied, and that the relative errors of prediction results are less than 7.5% for engineering applications.
机译:为了预测粘合的CFRP(碳纤维增强塑料)的失效,考虑到温度影响,施加到高速EMU(电动多个单元)的铝合金接头,在本研究中开发了一种组合的实验 - 数值方法。散装标本和粘合剂,包括厚粘物剪切接头(TSJ),围巾关节(SJ),围巾角度30度(SJ30度),45度(SJ45度)和60度(SJ60度),以及对接在23摄氏度(室温,RT),80℃(高温,HT)和-40℃(低温,LT)下制造和测试接头(BJ)。在不同温度下建立的二次应力标准在凝聚区模式(CZM)中引入进行仿真分析。试验结果表明,HT对粘合剂机械性能的影响比LT的效果更为明显。还发现TSJ由于发生粘性故障而显示出LT的故障强度的最大改善,而SJ和BJ由于存在正常应力而倾向于开发纤维撕裂。发现粘合剂层的应力分布除了SJ的正常应力之外是对称的。该仿真分析表明,预测精度与应用的二次应力标准有关,并且预测结果的相对误差小于7.5%,用于工程应用。

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