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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Influence of pre-compression on microstructure and creep characteristic of a single crystal nickel-base superalloy
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Influence of pre-compression on microstructure and creep characteristic of a single crystal nickel-base superalloy

机译:预压缩对单晶镍基高温合金组织和蠕变特性的影响

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The P-type γ′ rafted structure of a nickel-base single crystal superalloy with [001] orientation is formed by means of the pre-compressive stress treatment. An investigation has been made to detect the microstructure evolution and creep features of a single crystal nickel-base superalloy by means of the measurement of creep curves and SEM observation. Results show that creep resistance of alloy with the P-type structure exhibits a marked sensitivity of the applied stress and temperature. When the temperature is lower than 1000℃ under the applied stress of 200 MPa, compared with the alloy with the cuboidal γ′ phase, the P-type rafted structure alloy possesses both a lower minimum creep rate and longer rupture lifetime. When the applied temperature is higher and the applied stress is larger, the properties of the alloys are worsened. This indicates that the P-type rafted structure is beneficial to improving creep resistance of the alloy under the conditions of lower temperature and stress. Compared with the cuboidal γ′ phase alloy, the microstructure evolution of the P-type structure alloy occurs in the steady state of tensile creep. The P-type γ′ rafted structure in the alloy is gradually broken up, and twisted along the < 1 1 0 > orientation as creep goes on. After crept up to fracture, the twisted γ′ phase is coarsened, and transformed into the microstructure that the rafted γ′ phase is rearranged along the direction roughly perpendicular to the applied stress axis.
机译:通过预压缩应力处理形成[001]取向的镍基单晶高温合金的P型γ′筏结构。已经进行了研究,以通过蠕变曲线的测量和SEM观察来检测单晶镍基高温合金的组织演变和蠕变特征。结果表明,具有P型结构的合金的抗蠕变性对施加的应力和温度表现出显着的敏感性。在200 MPa的施加应力下温度低于1000℃时,与长方体γ'相的合金相比,P型筏结构合金的最小蠕变速率更低,断裂寿命更长。当施加的温度较高且施加的应力较大时,合金的性能变差。这表明P型筏结构在较低温度和应力条件下有利于改善合金的抗蠕变性。与长方体的γ′相合金相比,P型结构合金的组织演变发生在拉伸蠕变的稳态。合金中的P型γ'筏结构逐渐破裂,并随着蠕变的进行而沿<1 1 0>方向扭曲。在蠕变断裂之后,扭曲的γ'相被粗化,并转变成微观结构,使筏式γ'相沿大致垂直于所施加应力轴的方向重新排列。

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