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An Entropy-Based Failure Prediction Model for the Creep and Fatigue of Metallic Materials

机译:金属材料蠕变和疲劳的基于熵的失效预测模型

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摘要

It is well accepted that the second law of thermodynamics describes an irreversible process, which can be reflected by the entropy increase. Irreversible creep and fatigue damage can also be represented by a gradually increasing damage parameter. In the current study, an entropy-based failure prediction model for creep and fatigue is proposed based on the Boltzmann probabilistic entropy theory and continuum damage mechanics. A new method to determine the entropy increment rate for creep and fatigue processes is proposed. The relationship between entropy increase rate during creep process and normalized creep failure time is developed and compared with the experimental results. An empirical formula is proposed to describe the evolution law of entropy increase rate and normalized creep time. An entropy-based model is developed to predict the change of creep strain during the damage process. Experimental results of metals and alloys with different stresses and at different temperatures are adopted to verify the proposed model. It shows that the theoretical predictions agree well with experimental data.
机译:众所周知,第二热力学定律描述了一种不可逆的过程,可以通过熵增加来反映。不可逆的蠕变和疲劳损坏也可以通过逐渐增加的损伤参数来表示。在本研究中,基于Boltzmann概率熵理论和连续损伤力学提出了一种基于蠕变和疲劳的熵的故障预测模型。提出了一种确定蠕变和疲劳过程熵增量速率的新方法。爬虫过程中熵增加率与标准化蠕变失效时间之间的关系是开发的,并与实验结果相比。提出了一个经验公式来描述熵增加率和标准化蠕变时间的演化规律。开发了一种基于熵的模型来预测损伤过程中蠕变应变的变化。采用不同应力和不同温度的金属和合金的实验结果来验证拟议的模型。它表明理论上的预测与实验数据很好。

著录项

  • 期刊名称 Entropy
  • 作者

    Jundong Wang; Yao Yao;

  • 作者单位
  • 年(卷),期 2019(21),11
  • 年度 2019
  • 页码 1104
  • 总页数 16
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:熵增加率;蠕变应变;损伤力学;疲劳;金属材料;

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