首页> 外文会议>International Conference on Offshore Mechanics and Arctic Engineering, Jun 23-28, 2002, Oslo, Norway >POTENTIAL DEPENDENCE OF HYDROGEN EMBRITTLEMENT SUSCEPTIBILITY OF ULTRA HIGH STRENGTH LOW ALLOY STEEL
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POTENTIAL DEPENDENCE OF HYDROGEN EMBRITTLEMENT SUSCEPTIBILITY OF ULTRA HIGH STRENGTH LOW ALLOY STEEL

机译:超高强度低合金钢的氢脆化敏感性潜力

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In order to investigate the susceptibility of the ultra high strength low alloy steel to hydrogen embrittlement, a slow strain rate tensile test was canied out in boric acid-borax buffer aqueous solutions of pH 10 at the potential range from corrosion potential to hydrogen gas evolution potential, including adsorbed hydrogen potential. Experimental results revealed that the susceptibility to hydrogen embrittlement was dependent on the applied potential and increased linearly with increasing applied cathodic potential in the adsorbed hydrogen potential region. On the other hand, in the hydrogen gas evolution potential region, the susceptibility was independent of the applied potential and showed almost no variation. Based on the results obtained, these changes in susceptibility to hydrogen embrittlement with applied potential have been discussed in terms of the variation in reduction behavior of oxide films on the specimen surface.
机译:为了研究超高强度低合金钢对氢脆的敏感性,在pH 10的硼酸-硼砂缓冲水溶液中,在从腐蚀电位到氢气释放电位的电位范围内,进行了慢应变速率拉伸试验。 ,包括吸附的氢势。实验结果表明,对氢脆的敏感性取决于所施加的电势,并且随着所吸附的氢电势区域中所施加的阴极电势的增加而线性增加。另一方面,在氢气放出电势区域中,磁化率与所施加的电势无关,并且几乎没有变化。基于获得的结果,就试样表面上的氧化膜的还原行为变化而言,讨论了在施加电势时对氢脆敏感性的这些变化。

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