Analysis of multiaxial fatigue models based on the results of biaxial tests for aluminum alloys

Q3 Materials Science
A. A. Gabe, V. Wildeman, A. Yankin
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引用次数: 0

Abstract

During operation, modern structures and their parts are subjected to complex cyclic loads. In this case, a complex stress-strain state can arise in products, which can lead to a significant decrease in their fatigue life. In this regard, the development of methods for predicting fatigue fracture of critical structures becomes urgent. The purpose of this work is to test a simple approach for describing multiaxial fatigue datasets presented in the literature and compare it with known multiaxial fatigue models. Within the framework of the study, actual experimental data was considered, containing experimental data on the multiaxial fatigue of aluminum alloys 2024-T3 and 2024-T4. The alloys are actively used in the designs of aircraft, ships and spacecraft. As a result, the Sines model and its modernized version were considered (taking into account the first invariant of the stress tensor with respect to amplitude values). At the same time, an approach was developed to determine the constants of the models based on the results of two variants of training experiments. The paper presents the results in the form of relationships of the predicted and experimental fatigue life, obtained using the Sines model and its modification for two types of training tests. In the final part of the work, a comparative analysis of the Sines model and its modification, Smith-Watson-Topper, Fatemi-Socie and its modification is carried out. The analysis showed that the modified Sines model significantly improves the predictive ability, the proposed model better described the experimental data than the traditional Sines model and the Smith-Watson-Topper approach. At the same time, the descriptive ability of the model is comparable to the Fatemi-Socie one.
基于双轴试验结果的铝合金多轴疲劳模型分析
在运行过程中,现代结构及其部件承受复杂的循环荷载。在这种情况下,产品可能会出现复杂的应力-应变状态,这可能导致其疲劳寿命显著缩短。在这方面,开发预测关键结构疲劳断裂的方法变得紧迫。这项工作的目的是测试一种描述文献中多轴疲劳数据集的简单方法,并将其与已知的多轴疲劳模型进行比较。在研究框架内,考虑了实际的实验数据,包括2024-T3和2024-T4铝合金多轴疲劳的实验数据。这些合金被积极用于飞机、船舶和航天器的设计。因此,考虑了正弦模型及其现代化版本(考虑了应力张量相对于振幅值的第一不变量)。同时,根据训练实验的两种变体的结果,开发了一种确定模型常数的方法。本文以预测疲劳寿命和实验疲劳寿命的关系的形式给出了结果,这些结果是使用Sines模型及其对两种类型的训练测试的修改获得的。在工作的最后部分,对Sines模型及其修正、Smith Watson Topper、Fatemi Socie及其修正进行了比较分析。分析表明,改进的正弦模型显著提高了预测能力,与传统的正弦模型和Smith Watson Topper方法相比,该模型更好地描述了实验数据。同时,该模型的描述能力与法特米社会模型相当。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
PNRPU Mechanics Bulletin
PNRPU Mechanics Bulletin Materials Science-Materials Science (miscellaneous)
CiteScore
1.10
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0.00%
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