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Hydrogen Absorption Behavior and Absorbed Hydrogen Trapping Sites in Rolling Contact Fatigue

机译:滚动接触疲劳中的氢吸收行为和吸收的氢捕获位点

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摘要

Hydrogen absorption behavior and microstructural change of carburized JIS SCr420 steels containing different amounts of retained austenite in rolling contact fatigue were investigated. The thermal desorption analysis confirmed hydrogen desorption at the second-peak between 423 and 623 K after rolling contact fatigue. The hydrogen concentration at the second-peak increased with number of cycles in the rolling contact. This increment was larger when using the steel with higher amount of retained austenite before the fatigue test. It was still large even when the amount of martensitic transformation from retained austenite under cyclic stress to introduce dislocation with trapping capacity was small. The activation energies of desorption for the second-peak hydrogen were calculated to be 50.6 kJ·mol~(-1) for the steel with 10.4% retained austenite and 55.8 kJ·mol~(-1) for the steel with 4.9% retained austenite. The activation energies of cathodically charged 0.8%C steels with 10.9% and 6.0% retained austenite, simulating carburized layer before the test, were 36.2 and 42.2 kJ·mol~(-1), respectively. This means that the activation energy of hydrogen desorption increased during rolling contact. The absorbed hydrogen during the rolling contact fatigue was likely trapped in more stable trapping sites related to the retained austenite which were formed under cyclic stress.
机译:研究了含有不同量保留奥氏体在滚动接触疲劳中的渗碳的JIS Scr420钢的氢吸收行为和微观结构变化。滚动接触疲劳后,热解吸分析确认了423和623k之间的第二峰值的氢解吸。第二峰的氢浓度随滚动触点的循环次数增加而增加。在疲劳试验之前使用钢材较高的保留奥氏体时,这种增量更大。即使在循环应力下从保留奥氏体的不含马氏体转化的数量而引入捕获能力的脱位的距离很小,它仍然很大。将第二峰氢的解吸的活化能量计算为50.6kJ·mol〜(-1),钢为10.4%保留的奥氏体和55.8kJ·mol〜(-1)的钢,钢为4.9%保留的奥氏体。阴极带电0.8%C钢的激活能量分别在试验前模拟渗碳层的10.9%和6.0%C钢的激活能量分别为36.2〜42.2kJ·mol〜(-1)。这意味着在滚动接触期间氢解吸的激活能量增加。在滚动接触疲劳期间的吸收氢可能被捕获在与残留的奥氏体相关的更稳定的捕获位点,其在循环应力下形成。

著录项

  • 来源
    《ISIJ international》 |2021年第4期|1264-1271|共8页
  • 作者单位

    Steel Research Laboratories Nippon Steel Corporation 20-1 Shintomi Futtsu-Shi Chiba 293-8511 Japan;

    Steel Research Laboratories Nippon Steel Corporation 20-1 Shintomi Futtsu-Shi Chiba 293-8511 Japan;

    Steel Research Laboratories Nippon Steel Corporation 20-1 Shintomi Futtsu-Shi Chiba 293-8511 Japan;

    Advanced Technology Research Laboratories Nippon Steel Corporation 20-1 Shintomi Futtsu-Shi Chiba 293-8511 Japan;

    Steel Research Laboratories Nippon Steel Corporation 20-1 Shintomi Futtsu-Shi Chiba 293-8511 Japan;

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

    hydrogen embrittlement; rolling contact fatigue; martensitic steel; retained austenite; thermal desorption analysis;

    机译:氢脆;滚动接触疲劳;马氏体钢;保留奥氏体;热解吸分析;

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