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首页> 外文期刊>International Journal of Fatigue >Analysis of Ultra Low Cycle Fatigue problems with the Barcelona plastic damage model and a new isotropic hardening law
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Analysis of Ultra Low Cycle Fatigue problems with the Barcelona plastic damage model and a new isotropic hardening law

机译:利用巴塞罗那塑性损伤模型和新的各向同性硬化规律分析超低周疲劳问题

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摘要

This paper presents a plastic-damage formulation and a new isotropic hardening law, based on the Barcelona plastic damage model initially proposed by Lubliner et al. (1989), which is capable of predicting steel failure due to Ultra Low Cycle Fatigue (ULCF). This failure mechanism is obtained when the material is subjected to cyclic loads and breaks after applying a very low number of cycles, usually less than hundreds. The failure is driven by the plastic response of the material, and it is often predicted based on the plastic strains applied to it. The model proposed in this work has been formulated with the objective of predicting accurately the plastic behavior of the material, as well as its failure due to ULCF. This is achieved taking into account the fracture energy dissipated during the whole loading process. This approach allows the simulation of ULCF when it takes place due to regular cyclic loads or non-regular cyclic loads, as it is the case of seismic loads. Several simulations are conducted in order to show the capabilities of the formulation to reproduce the mechanical response of steel when it is subjected to regular and non-regular cyclic loads. The formulation is validated comparing the numerical results with several experimental tests made on X52 steel specimens. The agreement between the numerical and experimental results asses the validity of the proposed model to predict the plastic behavior of steel and its failure due to Ultra Low Cycle Fatigue.
机译:本文基于Lubliner等人最初提出的巴塞罗那塑性损伤模型,提出了一种塑性损伤公式和新的各向同性硬化定律。 (1989年),它能够预测由于超低循环疲劳(ULCF)而引起的钢失效。当材料承受循环载荷并在极少数次数(通常少于数百次)的循环后破裂时,就会获得这种失效机制。失效是由材料的塑性响应驱动的,通常根据施加在材料上的塑性应变来预测。制定这项工作中提出的模型的目的是准确预测材料的塑性行为以及由于ULCF引起的失效。这是在考虑整个加载过程中耗散的断裂能的情况下实现的。这种方法允许在由于周期性荷载或非周期性荷载而发生ULCF时进行仿真,例如地震荷载。进行了几次模拟,以显示该配方在承受规则和非规则循环载荷时能够再现钢的机械响应的能力。通过将数值结果与在X52钢样本上进行的若干实验测试进行比较,验证了该配方。数值和实验结果之间的一致性评估了所提出模型的有效性,该模型可预测钢的塑性行为及其因超低周疲劳引起的破坏。

著录项

  • 来源
    《International Journal of Fatigue》 |2015年第4期|132-142|共11页
  • 作者单位

    International Center for Numerical Methods in Engineering (CIMNE), Campus Nord, Gran Capita s, 08034 Barcelona, Spain,Department of Nautical Science and Engineering - UPC, Pla de Palau 18, 08003 Barcelona, Spain;

    International Center for Numerical Methods in Engineering (CIMNE), Campus Nord, Gran Capita s, 08034 Barcelona, Spain,Department of Strength of Materials and Structural Engineering - UPC, Edifici C1, Campus Nord, Jordi Girona 1-3, 08034 Barcelona, Spain;

    International Center for Numerical Methods in Engineering (CIMNE), Campus Nord, Gran Capita s, 08034 Barcelona, Spain,Department of Strength of Materials and Structural Engineering - UPC, Edifici C1, Campus Nord, Jordi Girona 1-3, 08034 Barcelona, Spain;

    International Center for Numerical Methods in Engineering (CIMNE), Campus Nord, Gran Capita s, 08034 Barcelona, Spain,Department of Strength of Materials and Structural Engineering - UPC, Edifici C1, Campus Nord, Jordi Girona 1-3, 08034 Barcelona, Spain;

    IDMEC, Rua Roberto Frias, 4200-465 Porto, Portugal,Departamento de Engenharia Mecanica, Faculdade de Engenharia, Universidade do Porto, Rua Roberto Frias, 4200-465 Porto, Portugal;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ultra Low Cycle Fatigue; Plastic damage; Isotropic hardening; Kinematic hardening; Constitutive modelling;

    机译:超低循环疲劳;塑性损伤;各向同性硬化;运动硬化;本构模型;

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