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The effect of creep exposure on microstructure stability and tensile properties of single crystal nickel based superalloy CMSX-4

机译:蠕变暴露对单晶镍基高温合金CMSX-4的组织稳定性和拉伸性能的影响

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摘要

The effect of creep exposure on microstructure stability and tensile properties of single crystal nickel-based superalloy CMSX-4 was studied. The single crystal samples with [001] crystallographic orientation were prepared by directional solidification in a Bridgman type of furnace. The creep exposure at 950℃, applied stresses ranging from 60 to 230 MPa for various time up to 2000 h leads to the degradation of initial cuboidal yly' microstructure. Coarsening of cuboidal γ'(Ni_3(Al, Ti)) precipitates, formation of transient microstructure consisting of coarsened γ' precipitates and rafts and finally development of well rafted γlγ' microstructure are observed in the crept specimens. The width of the γ' rafts decreases and their length increases with increasing applied stress and creep time. The width of the γ (Ni-based solid solution) channels increases with increasing applied stress and creep time. The creep rafting decreases the offset yield stress and ultimate tensile strength in the temperature from range 20 to 950℃ when compared to those of the heat treated specimens with cuboidal γlγ' microstructure. On the other hand, creep rafting increases significantly room and high temperature ductility of the studied alloy. The creep fracture surfaces exhibit palisade morphology formed by propagation of cracks along (001) crystallographic planes in directions perpendicular and parallel to loading direction.
机译:研究了蠕变暴露对单晶镍基高温合金CMSX-4的组织稳定性和拉伸性能的影响。具有[001]晶体取向的单晶样品是通过在Bridgman型炉中定向凝固制备的。 950℃下的蠕变暴露,施加的应力范围从60到230 MPa,持续2000 h的不同时间会导致初始长方体yly的微观结构退化。在蠕变的样品中,观察到长方体γ'(Ni_3(Al,Ti))沉淀物的粗化,由粗化的γ'沉淀物和木筏组成的瞬态微观结构的形成,以及最终漂流良好的γlγ'微观结构的发展。 γ'筏的宽度随着施加的应力和蠕变时间的增加而减小,其长度增加。 γ(镍基固溶体)通道的宽度随着施加应力和蠕变时间的增加而增加。与经过热处理的具有长方体γlγ'微结构的试样相比,蠕变筏在20至950℃的温度范围内降低了偏移屈服应力和极限抗拉强度。另一方面,蠕变漂流显着增加了所研究合金的室温和高温延展性。蠕变断裂表面显示出栅栏形态,该栅状形态是由裂纹沿(001)晶面在垂直于载荷方向和平行于载荷方向的传播所形成的。

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  • 来源
    《Metallic materials》 |2012年第6期|420-427|共8页
  • 作者单位

    Institute of Materials and Machine Mechanics, Slovak Academy of Sciences, Racianska 75, 831 02 Bratislava, Slovak Republic;

    Institute of Materials and Machine Mechanics, Slovak Academy of Sciences, Racianska 75, 831 02 Bratislava, Slovak Republic;

    Institute of Materials and Machine Mechanics, Slovak Academy of Sciences, Racianska 75, 831 02 Bratislava, Slovak Republic;

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

    nickel alloys; single crystal superalloy; creep; microstructure; mechanical properties;

    机译:镍合金;单晶高温合金蠕变;微观结构机械性能;

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