Corrosion Fatigue of High-Strength Titanium Alloys Under Different Stress Gradients

被引:0
|
作者
Sergio Baragetti
Francesco Villa
机构
[1] University of Bergamo,Department of Management, Information and Production Engineering
[2] University of Bergamo,GITT Centre on Innovation Management and Technology Transfer
来源
JOM | 2015年 / 67卷
关键词
Stress Corrosion Crack; Fatigue Crack Growth Rate; Methanol Concentration; Corrosion Fatigue; High Methanol Concentration;
D O I
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中图分类号
学科分类号
摘要
Ti-6Al-4V is the most widely used high strength-to-mass ratio titanium alloy for advanced engineering components. Its adoption in the aerospace, maritime, automotive, and biomedical sectors is encouraged when highly stressed components with severe fatigue loading are designed. The extents of its applications expose the alloy to several aggressive environments, which can compromise its brilliant mechanical characteristics, leading to potentially catastrophic failures. Ti-6Al-4V stress-corrosion cracking and corrosion-fatigue sensitivity has been known since the material testing for pressurized tanks for Apollo missions, although detailed investigations on the effects of harsh environment in terms of maximum stress reduction have been not carried out until recent times. In the current work, recent experimental results from the authors’ research group are presented, quantifying the effects of aggressive environments on Ti-6Al-4V under fatigue loading in terms of maximum stress reduction. R = 0.1 axial fatigue results in laboratory air, 3.5 wt.% NaCl solution, and CH3OH methanol solution at different concentrations are obtained for mild notched specimens (Kt = 1.18) at 2e5 cycles. R = 0.1 tests are also conducted in laboratory air, inert environment, 3.5 wt.% NaCl solution for smooth, mild and sharp notched specimens, with Kt ranging from 1 to 18.65, highlighting the environmental effects for the different load conditions induced by the specimen geometry.
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页码:1154 / 1161
页数:7
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