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首页> 外文期刊>International Journal of Damage Mechanics >Energy-based damage descriptions to assess fatigue life of steel samples undergoing various multiaxial loading spectra
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Energy-based damage descriptions to assess fatigue life of steel samples undergoing various multiaxial loading spectra

机译:基于能量的损伤描述,以评估经过各种多轴加载光谱的钢样品的疲劳寿命

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摘要

The present study evaluates fatigue damage of four steel alloys, mild steel, SS347, SNCM439, and SNCM630, by means of Socie, Ellyin, and Varvani-Farahani damage models. The Socie model assesses fatigue damage through product of maximum principal strain amplitude and maximum normal stress on the maximum principal strain plane. Damage description by Ellyin was developed as both elastic and plastic strain energies over loading spectrum were integrated. The elastic-plastic response of materials is evaluated through use of Garud's constitutive plasticity model to achieve components of stress/ strain and corresponding stress-strain hysteresis loops. Based on the Varvani-Farahani model, components of stress and strain calculated from largest Mohr's circles over peak-valley events are employed to assess fatigue damage. Overall damage was calculated on the basis of energy-based models from counted reversals over entire loading blocks and related to fatigue life. The Socie approach overpredicted lives for steel samples. Predicted life data for mild steel and SS347 samples fell below the midline based on the Ellyin's model. Both Ellyin and Varvani-Farahani models showed a good agreement of predicted lives for steel samples within factors +/- 3 as compared with experimental data. The choice of damage assessment was highly related to consistency of damage descriptions to crack formation and early growth, stress/strain components, material properties, and loading spectrum.
机译:本研究通过社会,Ellyin和Varvani-Farahani损伤模型评估了四种钢合金,轻度钢,SS347,SNCM439和SNCM630的疲劳损坏。社会模型通过最大主应变幅度和最大主应变平面上的最大正常应力评估疲劳损坏。 Ellyin的损伤描述被开发为整合加载光谱的弹性和塑性应变能量。通过使用Garud的组成型塑性模型来评估材料的弹性塑料响应,以实现应力/应变和相应的应力 - 应变滞后环的部件。基于Varvani-Farahani模型,采用最大MOHR圆圈圆谷事件计算的应力和应变的组分来评估疲劳损伤。根据整个装载块的计数逆转和疲劳寿命,基于基于能量的模型计算总体损坏。社会方法对钢样品过于预测的生活。基于Ellyin的模型,Mild Steel和SS347样本的预测寿命数据下降低于中线。与实验数据相比,Ellyin和Varvani-Farahani模型均表现出预测的钢水样品的钢水样品的一致性。损伤评估的选择与抗裂形成和早期生长,应激/菌株组分,材料特性和装载光谱的损伤描述的一致性高。

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