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首页> 外文期刊>Materials Science and Engineering >Relationship between non-inclusion induced crack initiation and microstructure on fatigue behavior of bainite/martensite steel in high cycle fatigue/very high cycle (HCF/VHCF) regime
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Relationship between non-inclusion induced crack initiation and microstructure on fatigue behavior of bainite/martensite steel in high cycle fatigue/very high cycle (HCF/VHCF) regime

机译:高循环疲劳/非常高循环(HCF / VHCF)贝氏体/马氏体钢疲劳行为与微观结构的关系

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摘要

High cycle and very high cycle fatigue (HCF/VHCF) in a bainite/martensite (B/M) multiphase steel with varying inclusion size and microstructural features was studied using ultrasonic axial cycling test. The fatigue crack initiation was predominantly induced by inclusions in specimens with large inclusion size, whereas fatigue crack initiated from the sub-surface microstructure in specimens with coarse microstructure. The fatigue life from granular bright facet (GBF) to fish-eye and from fish-eye to the critical crack size was calculated to obtain an estimate of the contribution to fatigue life by GBF, for the two modes of crack initiation within the HCF/VHCF regime. The results demonstrated that the majority of fatigue life was consumed by the crack initiation process along with the formation of GBF irrespective of whether the crack initiated from inclusions or from sub-surface microstructure. In the case of crack initiation from sub-surface microstructure, the ratio of fatigue crack initiation life to total fatigue life (N_i/N_f) had a wide scatter, which is attributed to varying B/M hierarchical structure in individual prior austenite grains.
机译:使用超声轴向循环试验研究了具有不同夹杂物尺寸和微观结构特征的贝氏体/马氏体(B / M)多相钢中的高循环和非常高的循环疲劳(HCF / VHCF)。疲劳裂纹引发主要是由具有较大夹杂物尺寸的样品中的夹杂物诱导,而从具有粗糙微观结构的试样中的亚表面微观结构引发的疲劳裂纹。计算从粒状明亮刻面(GBF)到捕鱼和鱼眼到临界裂缝大小的疲劳寿命,以获得GBF对疲劳寿命的贡献的估计,用于HCF内的两种裂纹启动模式/ VHCF制度。结果表明,大多数疲劳寿命随着裂缝引发过程而消耗的,而GBF的形成,而不论裂缝是否从夹杂物或亚表面微观结构引发。在亚表面微观结构的裂纹开始的情况下,疲劳裂纹引发寿命与总疲劳寿命(N_I / N_F)的比率具有广泛的散射,其归因于单个先前奥氏体晶粒中的不同的B / M层级结构。

著录项

  • 来源
    《Materials Science and Engineering》 |2021年第28期|140692.1-140692.12|共12页
  • 作者单位

    Material Science and Engineering Research Center School of Mechanical Electronic and Control Engineering Beijing Jiaotong University Beijing 100044 China;

    Material Science and Engineering Research Center School of Mechanical Electronic and Control Engineering Beijing Jiaotong University Beijing 100044 China;

    Tsinghua University Key Laboratory of Advanced Materials School of Material Science and Engineering Beijing 100084 China;

    Laboratory for Excellence in Advanced Steel Research Department of Metallurgical Materials and Biomedical Engineering University of Texas at El Paso 500 W. University Avenue El Paso TX 79968 USA;

    Material Science and Engineering Research Center School of Mechanical Electronic and Control Engineering Beijing Jiaotong University Beijing 100044 China Tsinghua University Key Laboratory of Advanced Materials School of Material Science and Engineering Beijing 100084 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Very high cycle fatigue; Fatigue crack initiation; Microstructure; Fatigue life estimation; Bainite;

    机译:非常高的循环疲劳;疲劳裂纹启动;微观结构;疲劳生活估计;贝恩特;
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