氢
氢脆
脆化
硫化氢
材料科学
高压灭菌器
巴(单位)
冶金
碳纤维
压力容器
复合材料
化学
腐蚀
有机化学
地质学
硫黄
海洋学
复合数
作者
Anton Trautmann,Gregor Mori,Markus Oberndorfer,Stephan Bauer,Christoph Holzer,Christoph Dittmann
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2020-08-14
卷期号:13 (16): 3604-3604
被引量:62
摘要
To avoid failures due to hydrogen embrittlement, it is important to know the amount of hydrogen absorbed by certain steel grades under service conditions. When a critical hydrogen content is reached, the material properties begin to deteriorate. The hydrogen uptake and embrittlement of three different carbon steels (API 5CT L80 Type 1, P110 and 42CrMo4) was investigated in autoclave tests with hydrogen gas (H2) at elevated pressure and in ambient pressure tests with hydrogen sulfide (H2S). H2 gas with a pressure of up to 100 bar resulted in an overall low but still detectable hydrogen absorption, which did not cause any substantial hydrogen embrittlement in specimens under a constant load of 90% of the specified minimum yield strength (SMYS). The amount of hydrogen absorbed under conditions with H2S was approximately one order of magnitude larger than under conditions with H2 gas. The high hydrogen content led to failures of the 42CrMo4 and P110 specimens.
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