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Effects of hydrogen on fatigue life of Ti-4Al-2V titanium alloy

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【作者】 何晓岳俊沈保罗曹建玲邱绍宇邹红

【Author】 HE Xiao 1,2 , YUE Jun 2, SHEN Bao luo 1, CAO Jian ling 1, QIU Shao yu 3, ZOU Hong 3 (1. Department of Metallic Material, Sichuan University, Chengdu 610061, China; 2. Metallurgical Department, Chengdu Aircraft Industrial (Group) Corporation,Chengdu 610092, China; 3. State Main Laboratory of Nuclear Power Institute of China, Chengdu 610041, China)

【机构】 Department of Metallic Material, Sichuan University,Metallurgical Department, Chengdu Aircraft Industrial (Group) Corporation,Department of Metallic Material, Sichuan University,Department of Metallic Material, Sichuan University,State Main Laboratory of Nuclear Power Institute of China,State Main Laboratory of Nuclear Power Institute of China Chengdu 610061, ChinaMetallurgical Department, Chengdu Aircraft Industrial (Group) Corporation,Chengdu 610092, China,Chengdu 610092, China, Chengdu 610061, China, Chengdu 610061, China, Chengdu 610041, China, Chengdu 610041, China

【Abstract】 Four hydrogen contents were employed to investigate the effects of hydrogen on fatigue life of Ti 4Al 2V titanium alloy by means of section varied samples. Results reveal that the fatigue life of the materials with (116~280)×10 -6 hydrogen is higher than that of natural hydrogen material provided that the fatigue load Δ σ is over 550 MPa. At higher Δ σ , the content of hydrogen has small effects on fatigue life within (116280)×10 -6 hydrogen. For material containing 280×10 -6 hydrogen, fatigue cracks tend to initiate at sample edges at higher load, in contrast, to initiate at sites of hydrides at lower load. The interstitial hydrogen atoms softening the persistent slip bands(PSB) and hydrides separating from the body become the cause of decrease in fatigue life. Hydrides resolved into the body is observed at lower Δ σ for material with 280×10 -6 hydrogen, which is the result of concentration of hydrogen atoms at crack tips and stress induced re precipitation of hydrides.

【关键词】 titanium alloyfatigue fracturehydrogenhydride
【Key words】 titanium alloyfatigue fracturehydrogenhydride
  • 【文献出处】 Transactions of Nonferrous Metals Society of China ,中国有色金属学会会刊(英文版) , 编辑部邮箱 ,2003年02期
  • 【分类号】TG113
  • 【被引频次】1
  • 【下载频次】35
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