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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >3D discrete dislocation dynamics study of creep behavior in Ni-base single crystal superalloys by a combined dislocation climb and vacancy diffusion model
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3D discrete dislocation dynamics study of creep behavior in Ni-base single crystal superalloys by a combined dislocation climb and vacancy diffusion model

机译:基于位错爬升和空位扩散模型的镍基单晶高温合金蠕变行为的3D离散位错动力学研究

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摘要

A three-dimensional (3D) discrete dislocation dynamics (DDD) creep model is developed to investigate creep behavior under uniaxial tensile stress along the crystallographic [001] direction in Ni-base single crystal superalloys, which takes explicitly account of dislocation glide, climb and vacancy diffusion, but neglects phase transformation like rafting of y' precipitates. The vacancy diffusion model takes internal stresses by dislocations and mismatch strains into account and it is coupled to the dislocation dynamics model in a numerically efficient way. This model is helpful for understanding the fundamental creep mechanisms in superalloys and clarifying the effects of dislocation glide and climb on creep deformation. In cases where the precipitate cutting rarely occurs, e.g. due to the high anti-phase boundary energy and the lack of superdislocations, the dislocation glide in the / matrix and the dislocation climb along the y/y' interface dominate plastic deformation. The simulation results show that a high temperature or a high stress both promote dislocation motion and multiplication, so as to cause a large creep strain. Dislocation climb accelerated by high temperature only produces a small plastic strain, but relaxes the hardening caused by the filling y channels and lets dislocations further glide and multiply. The strongest variation of vacancy concentration occurs in the horizontal channels, where more mixed dislocations exit and tend to climb. The increasing internal stresses due to the increasing dislocation density are easily overcome by dislocations under a high external stress that leads to a long-term dislocation glide accompanied by multiplication.
机译:建立了三维(3D)离散位错动力学(DDD)蠕变模型,以研究镍基单晶高温合金沿晶体[001]方向在单轴拉伸应力下的蠕变行为,其中明确考虑了位错滑移,爬升和空位扩散,但忽略了相变,如y'沉淀物的漂流。空位扩散模型考虑了位错和失配应变引起的内部应力,并以数值有效的方式与位错动力学模型耦合。该模型有助于理解高温合金的基本蠕变机理,并阐明位错滑动和爬升对蠕变变形的影响。在很少发生沉淀物切割的情况下,例如由于高的反相边界能和缺乏超位错,位错在/矩阵中滑动和位错沿y / y'界面爬升占主导地位。仿真结果表明,高温或高应力都促进位错运动和倍增,从而引起较大的蠕变应变。高温加速的位错爬升只会产生较小的塑性应变,但会缓解由填充y通道引起的硬化,并使位错进一步滑动和繁殖。空位浓度的最大变化发生在水平通道中,那里更多的混合位错退出并趋于上升。由于位错密度增加而引起的内部应力增加很容易被高外部应力下的位错克服,从而导致长期的位错滑动并伴随着倍增。

著录项

  • 来源
    《Journal of the Mechanics and Physics of Solids》 |2017年第5期|209-223|共15页
  • 作者单位

    Interdisciplinary Centre for Advanced Materials Simulation, Ruhr-University Bochum, Bochum 44801, Germany;

    University Grenoble Alpes/CNRS, SIMaP-GPM2, Grenoble F-38000, France;

    Interdisciplinary Centre for Advanced Materials Simulation, Ruhr-University Bochum, Bochum 44801, Germany;

    Interdisciplinary Centre for Advanced Materials Simulation, Ruhr-University Bochum, Bochum 44801, Germany;

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

    Superalloys; Dislocation dynamics; Creep; Dislocation climb;

    机译:高温合金;脱位动力学;蠕变;脱位爬升;

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