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Environment hydrogen embrittlement of pipeline steel X70 under various gas mixture conditions with in situ small punch tests

机译:X70管道钢在各种混合气体条件下的环境氢脆性与原位小冲孔试验

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摘要

A series of small punch (SP) tests was conducted to investigate the effect of natural/hydrogen gas mixture conditions on the mechanical properties of X70 pipeline steel. The various gas mixture conditions included 0.1, 0.5,1,3, and 5 vol% hydrogen blends and three typical pipeline pressure levels (5,7, and 10 MPa). The hydrogen embrittlement (HE) susceptibility grades depend on the hydrogen concentration and tend to increase with hydrogen concentration. The hydrogen gas mixture conditions have an insignificant effect on the yield load of the elastic bending region, whereas the maximal load decreases significantly when the hydrogen concentrations increase. Moreover, the quantitative parameters obtained from the SP load displacement curves and fracture morphologies were analyzed to characterize the HE behavior. By evaluating the SP absorption energy as a function of the hydrogen pressure, the ductile-brittle transition and saturated hydrogen pressures of the HE were determined. According to the results, the strength degradation grades of the mechanical properties of X70 pipeline steel in the gaseous hydrogen environment were not affected by the exposure time.
机译:进行了一系列小冲孔(SP)测试,以研究天然气/氢气混合条件对X70管线钢的机械性能的影响。各种气体混合物条件包括0.1、0.5、1、3和5 vol%的氢气混合物和三种典型的管道压力水平(5,7和10 MPa)。氢脆化(HE)敏感性等级取决于氢浓度,并且倾向于随氢浓度而增加。氢气混合条件对弹性弯曲区域的屈服载荷影响不大,而当氢气浓度增加时,最大载荷显着降低。此外,分析了从SP载荷位移曲线和断裂形态获得的定量参数,以表征HE行为。通过评估SP吸收能量与氢压力的函数关系,确定了HE的延性-脆性转变和饱和氢压力。根据结果​​,X70管线钢在气态氢环境下的力学性能强度退化等级不受暴露时间的影响。

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