首页> 外文期刊>International journal of hydrogen energy >Hydrogen effects on electrochemically charged additive manufactured by electron beam melting (EBM) and wrought Ti-6A1-4V alloys
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Hydrogen effects on electrochemically charged additive manufactured by electron beam melting (EBM) and wrought Ti-6A1-4V alloys

机译:通过电子束熔化(EBM)制造的电化学带电添加剂的氢气效应和锻造Ti-6a1-4V合金

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摘要

The hydrogen behavior in electrochemically charged electron beam melting (EBM) and wrought Ti-6A1-4V alloys with a similar β-phase content of ~6 wt% was compared. Hydrogenation resulted in the formation of microvoids, either adjacent to the surface or along interphases, their coalescence, and emanation of microcracks around them. The microstructure of the EBM alloy displayed a discontinuous arrangement of β-phase particles in the short-transverse direction, a smaller lattice constant of the p-phase, and more α/p interphase boundaries, making the EBM alloy more susceptible to hydrogen embrittle-ment. The hydrogenated alloys were composed of α_H (hep) and β_H (bec) solid solutions as well as δ_a (fcc) and δ_b (fee) hydrides with lattice parameters that have not been reported before. These hydrides were transformed from the primary a-phase. No major microstrain difference was observed between the EBM and wrought alloys, either before or after hydrogenation. Microstrains in the a and P phases increased following hydrogenation; they were larger in the β_H and δ_a phases compared to the α_H and δ_b phases. A post-treatment that would increase the size of the β particles is suggested to improve the resistance of EBM Ti-6A1-4V to hydrogen-induced damage.
机译:比较了电化学电荷电子束熔化(EBM)的氢行为和具有相似β相含量的β-相含量的甲基-6a1-4V合金。氢化导致形成细胞的形成,邻近表面或跨关节,它们的聚结和它们周围的微裂纹。 EBM合金的微观结构在短横向方向上显示了β相颗粒的不连续布置,P阶段的较小晶格常数,以及更多α/ P间隔边界,使得EBM合金更容易受到氢气的影响 - m。氢化合金由α_H(HEP)和β-β-(BEC)固体溶液以及Δ_A(FCC)和Δ_b(费用)氢化物,其尚未报道晶格参数。将这些氢化物从初级A相转化。在氢化之前或之后,EBM和锻造合金之间没有观察到主要微纹状差异。氢化后A和P阶段的微织道增加;与α_H和δ_B相比,它们在β_H和Δ_A阶段中较大。建议提高β颗粒尺寸的后处理,以改善EBM Ti-6a1-4V对氢致损伤的抗性。

著录项

  • 来源
    《International journal of hydrogen energy》 |2020年第46期|25523-25540|共18页
  • 作者单位

    Department of Materials Science and Engineering Tel-Auiu Uniuersity (TAU) Ramat Auiu Tel Auiu 6997801 Israel Nuclear Research Center Negeu (NRCN) P.O. Box 9001 Beer Sheua 84190 Israel;

    Department of Materials Science and Engineering Tel-Auiu Uniuersity (TAU) Ramat Auiu Tel Auiu 6997801 Israel;

    Nuclear Research Center Negeu (NRCN) P.O. Box 9001 Beer Sheua 84190 Israel;

    Department of Materials Engineering Ben-Gurion Uniuersity o/the Negeu P.O. Box 653 Beer Sheua 841050 Israel;

    Israel Atomic Energy Commission (IAEC) P.O. Box 7061 Tel Auiu 61070 Israel;

    Department of Materials Science and Engineering Tel-Auiu Uniuersity (TAU) Ramat Auiu Tel Auiu 6997801 Israel;

    Wolfson Applied Materials Research Center Tel-Auiu Uniuersity Ramat Auiu Tel Auiu 6997801 Israel;

    Use Katz Institute for Nanoscale Science and Technology Ben-Gurion Uniuersity of the Negeu (BGU) P.O. Box 653 Beer Sheua 84105 Israel;

    Nuclear Research Center Negeu (NRCN) P.O. Box 9001 Beer Sheua 84190 Israel AM Center Rotem Industries Ltd. Mishor Yamin 86800 Israel;

    Nuclear Research Center Negeu (NRCN) P.O. Box 9001 Beer Sheua 84190 Israel AM Center Rotem Industries Ltd. Mishor Yamin 86800 Israel;

    Department of Materials Science and Engineering Tel-Auiu Uniuersity (TAU) Ramat Auiu Tel Auiu 6997801 Israel;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Additive manufacturing (AM); Electron beam melting (EBM); Ti-6A1-4V alloy; Titanium hydride; Hydrogen embrittlement (HE);

    机译:添加剂制造(AM);电子束熔化(EBM);TI-6A1-4V合金;氢化钛;氢脆化(他);

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