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Influence of Al on Kinetics of Discontinuous Precipitation in Ni-38Cr Alloy

机译:Al对Ni-38Cr合金不连续析出动力学的影响

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摘要

The influence of Al on the kinetics of discontinuous precipitation in the Ni-Cr system was experimentally examined using ternary Ni-38Cr-Al alloys with Al concentrations of 3.8 mass% and 4.2 mass%. The ternary alloys were homogenized at 1 473 K for 16 h, solution treated at 1 473-1 493 K for 30 min, and then isother-mally annealed in the temperature range of 773-1 073 K for various times up to 50 h. Due to the solution heat treatment, both ternary alloys show the polycrystalline single-phase microstructure of the Ni-rich solid-solution (γ) phase with the face-centered cubic structure. In the early stages of isothermal annealing, however, fine particles of the Ni_3Al (γ') phase with the L1_2 structure are formed in the γ matrix by continuous precipitation. On the other hand, the cell of the lamellar microstructure consisting of the γ phase and the Cr-rich solid-solution (a) phase with the body-centered cubic structure is formed along the grain boundary of the γ matrix and then grows into the γ matrix. The fine particles of the γ phase are dispersed also in the γ phase of the cell. The migration distance of the moving cell boundary is proportional to the annealing time. Thus, the growth rate of the cell is constant independent of the annealing time. The growth rate and the interlamellar spacing of the cell monotonically increase with increasing annealing temperature. A kinetic model was used to analyze quantitatively the relationship between the growth rate and the interlamellar spacing. Although the discontinuous precipitation in the ternary Ni-38Cr-Al alloys occurs in a complicated manner, the analysis indicates that the growth of the lamellar cell is controlled by the boundary diffusion of Cr along the moving cell boundary.
机译:使用铝含量为3.8质量%和4.2质量%的三元Ni-38Cr-Al合金,通过实验研究了Al对Ni-Cr系统中不连续析出动力学的影响。将三元合金在1 473 K下均质化16 h,在1 473-1 493 K下固溶处理30分钟,然后在773-1 073 K的温度范围内进行多次退火,直至50 h。由于固溶热处理,两种三元合金均具有面心立方结构的富镍固溶体(γ)相的多晶单相微观结构。然而,在等温退火的早期阶段,通过连续沉淀在γ基体中形成了具有L1_2结构的Ni_3Al(γ')相细颗粒。另一方面,由γ相和富Cr固溶体(a)相组成的层状微结构单元,具有体心立方结构,沿着γ矩阵的晶界形成,然后生长成γ矩阵。 γ相的细颗粒也分散在电池的γ相中。运动单元边界的迁移距离与退火时间成正比。因此,细胞的生长速率是恒定的,与退火时间无关。随着退火温度的升高,细胞的生长速率和层间间距单调增加。使用动力学模型定量分析生长速率和层间间距之间的关系。尽管三元Ni-38Cr-Al合金中的不连续析出是复杂的,但分析表明层状晶胞的生长受Cr沿运动晶胞边界的边界扩散控制。

著录项

  • 来源
    《ISIJ international》 |2010年第11期|p.1676-1682|共7页
  • 作者单位

    Special Steel Laboratory, R&D Center, Daido Steel Co., Ltd., 2-30 Daido-chou, Minami-ku, Nagoya 457-8545 Japan;

    Department of Materials Science and Engineering, Tokyo Institute of Technology, 4259-J2-59 Nagatsuta-chou, Midori-ku, Yokohama 226-8502 Japan;

  • 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

    Ni-base super alloy; discontinuous precipitation; boundary diffusion; kinetics; cellar reaction;

    机译:镍基超级合金;不连续的降水;边界扩散动力学;酒窖反应;

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