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On the hydrogen embrittlement behavior of nickel-based alloys: Alloys 718 and 725

机译:镍基合金氢脆行为:合金718和725

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摘要

Nickel-based superalloys have attracted immense attention in the oil and gas industry due to their outstanding combination of mechanical properties and corrosion resistance. In corrosive service environment, hydrogen embrittlement is a severe issue. In the present work, the susceptibility of two precipitation-hardened nickel-based alloys, ie., Alloy 718 and Alloy 725, to hydrogen embrittlement was studied using slow strain-rate tensile test and advanced characterization techniques. The mechanical properties and fracture behavior of these two alloys were compared in both hydrogen-free and hydrogen-charged conditions. In the presence of hydrogen, Alloy 718 failed prevalently through a combination of transgranular and intergranular cracking behavior, while Alloy 725 failed primarily through intergranular failure with a considerably lower resistance to hydrogen embrittlement. This distinction was attributed to their different microstructures and different types of precipitates along grain boundaries. Specifically, in Alloy 725, the decoration of (Cr, Mo)-rich precipitates at grain boundaries distort the local structures and cause such boundaries to be vulnerable to hydrogen attack, thus promoting intergranular cracking.
机译:由于其出色的机械性能和耐腐蚀性,镍基超合金引起了石油和天然气工业中的巨大关注。在腐蚀性服务环境中,氢脆化是一个严重的问题。在本作工作中,使用慢速应变速率拉伸试验和先进的表征技术研究了两种沉淀硬化镍基合金,即氢气脆化的易感性。将这两种合金的机械性能和断裂行为进行比较,在无氢和氢气电荷的条件下进行了比较。在氢气存在下,合金718通过响晶和晶间裂化行为的组合普遍存在,而合金725主要通过晶间破坏失效,其抗晶体抗性相当低。这种区别归因于它们不同的微观结构和不同类型的沿晶界的沉淀物。具体地,在合金725中,在晶界处的(Cr,Mo) - 中等沉淀物的装饰扭曲了局部结构并导致这种边界容易受到氢发作的影响,从而促进晶间裂化。

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  • 来源
    《Materials Science and Engineering》 |2020年第5期|139785.1-139785.11|共11页
  • 作者

    Xu Lu; Yan Ma; Dong Wang;

  • 作者单位

    Department of Mechanical and Industrial Engineering Norwegian University of Science and Technology Richard Birkelands vei 2B No-7491 Trondheim Norway;

    Steel Institute (IEHK) RWTH Aachen University Intzestraβe 1 D-52072 Aachen Germany Max-Plank-Institut fuer Eisenforschung GmbH Max-Planck-Straβe 1 D-40237 Duesseldorf Germany;

    Department of Mechanical and Industrial Engineering Norwegian University of Science and Technology Richard Birkelands vei 2B No-7491 Trondheim Norway;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hydrogen embrittlement; Nickel-based superalloys; Intergranular precipitates; Grain boundary; Hydrogen-induced cracking;

    机译:氢脆;镍基超合金;晶间沉淀物;晶界;氢致裂化;

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