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A Modified Nonlinear Damage Accumulation Model for Fatigue Life Prediction Considering Load Interaction Effects

机译:考虑负荷互动效应的疲劳寿命预测修改的非线性损伤累积模型

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摘要

Many structures are subjected to variable amplitude loading in engineering practice. The foundation of fatigue life prediction under variable amplitude loading is how to deal with the fatigue damage accumulation. A nonlinear fatigue damage accumulation model to consider the effects of load sequences was proposed in earlier literature, but the model cannot consider the load interaction effects, and sometimes it makes a major error. A modified nonlinear damage accumulation model is proposed in this paper to account for the load interaction effects. Experimental data of two metallic materials are used to validate the proposed model. The agreement between the model prediction and experimental data is observed, and the predictions by proposed model are more possibly in accordance with experimental data than that by primary model and Miner’s rule. Comparison between the predicted cumulative damage by the proposed model and an existing model shows that the proposed model predictions can meet the accuracy requirement of the engineering project and it can be used to predict the fatigue life of welded aluminum alloy joint of Electric Multiple Units (EMU); meanwhile, the accuracy of approximation can be obtained from the proposed model though more simple computing process and less material parameters calling for extensive testing than the existing model.
机译:许多结构在工程学实践中受到可变幅度载荷。可变幅度负荷下疲劳寿命预测的基础是如何处理疲劳损伤积累。在早期文献中提出了一种非线性疲劳损伤累积模型,以考虑负载序列的影响,但模型无法考虑负载交互效果,有时它会产生重大错误。本文提出了一种改进的非线性损伤累积模型,以解释负载交互效应。两个金属材料的实验数据用于验证所提出的模型。观察到模型预测和实验数据之间的协议,并且提出模型的预测更容易根据实验数据,而不是通过初级模型和矿工规则。所提出的模型和现有模型之间预测的累积损伤之间的比较表明,所提出的模型预测可以满足工程项目的准确性要求,可用于预测电动多个单元的焊接铝合金接头的疲劳寿命(EMU );同时,可以从所提出的模型获得近似的准确性,尽管更简单的计算过程和较少的材料参数呼叫远远超过现有模型。

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