基于加载顺序的改进疲劳寿命预测模型

Qiwen Xue, X. Du
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引用次数: 4

摘要

目的针对Corten-Dolan模型中关键参数d难以确定的问题,在将小载荷、损伤程度和应力状态引入Corten-Dolan模型及现有改进模型的基础上,进一步考虑相邻两级载荷的序贯效应。设计/方法/途径采用增大应力比系数两种不同的方法修改参数d,并分别考虑加载顺序和损伤程度作为独立的影响因素,建立了两种改进的Corten-Dolan模型。根据普通材料(标准45钢)、合金材料(标准16Mn钢)和Q235B钢焊接接头的试验数据,验证了上述两种改进模型用于疲劳寿命预测的有效性和可行性。结果表明,与传统Miner模型和现有的Corten-Dolan改进模型相比,两种改进模型在两段载荷和多段载荷下对焊接材料疲劳寿命的预测精度更高。由于模型的数学表达式相对简单,不需要多层迭代计算,便于在实际工程中对焊接结构的疲劳寿命进行预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An improved fatigue life prediction model based on loading sequence
PurposeIn view of the difficulty in determining the key parameters d in the Corten-Dolan model, based on the introduction of small loads, damage degrees and stress states to the Corten-Dolan model and the existing improved model, the sequential effects of the adjacent two-stage load were further considered.Design/methodology/approachTwo improved Corten-Dolan models were established on the basis of modifying the parameter d by two different methods, namely, increasing stress ratio coefficient as well as considering the effects of loading sequence and damage degree as independent influencing factors respectively. According to the test data of the welded joints of common materials (standard 45 steel), alloy materials (standard 16Mn steel) and Q235B steel, the validity and feasibility of the above two improved models for fatigue life prediction were verified.FindingsResults show that, compared with the traditional Miner model and the existing Corten-Dolan improved model, the two improved models have higher prediction accuracy in the fatigue life prediction of welding materials whether under two-stage load or multi-stage load.Originality/valueBecause the mathematical expressions of the models are relatively simple and need no multi-layer iterative calculation, it is convenient to predict the fatigue life of welded structure in practical engineering.
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