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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Effect of gaseous hydrogen charging on the tensile properties of standard and medium MnX70 pipeline steels
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Effect of gaseous hydrogen charging on the tensile properties of standard and medium MnX70 pipeline steels

机译:气态氢充注对标准和中等MnX70管线钢拉伸性能的影响

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摘要

The tensile properties of two X70 steels with high (1.14 wt-%) and medium (0.5 wt-%) Mn contents have been investigated by testing at 25 degrees C of tubular specimens charged with an internal gas pressure of 10 MPa of hydrogen or argon. The hydrogen-charged samples were additionally tested at 50 and 100 degrees C. Tensile testing showed that the equiaxed ferrite-pearlite microstructure of higher Mn steel was most sensitive to hydrogen embrittlement and that the banded ferrite-pearlite microstructure of the higher Mn strip was more susceptible to hydrogen embrittlement than the medium Mn strip. The more highly banded ferrite-pearlite microstructure in the higher Mn steel provided numerous sites for concentration of hydrogen to levels that promoted crack initiation and growth. Test temperatures up to 100 degrees C reduced the yield and tensile strengths, increased the total elongation and decreased the extent of hydrogen embrittlement because of enhanced dislocation mobility and less effective hydrogen trapping.
机译:通过在25摄氏度下对装有氢气或氩气内部气压为10 MPa的管状试样进行测试,研究了两种高锰含量(1.14 wt%)和中锰(0.5 wt%)的X70钢的拉伸性能。 。充氢的样品在50和100摄氏度下进行了额外的测试。拉伸测试表明,高锰钢的等轴铁素体-珠光体显微组织对氢脆最敏感,高锰钢带状的带状铁素体-珠光体显微组织对氢脆性最敏感。比中等Mn带更容易发生氢脆。高锰钢中带状较高的铁素体-珠光体显微组织为氢的聚集提供了许多位置,使氢浓度达到促进裂纹萌生和扩展的水平。高达100摄氏度的测试温度降低了屈服强度和拉伸强度,增加了总伸长率,并降低了氢脆化的程度,这是因为位错迁移率提高了,氢捕获效率降低了。

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