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單晶鎳基合金在拉伸蠕變期間的組織演化與分析
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國家自然科學基金項目(面上項目,重點項目,重大項目)


Microstructure Evolution and Analysis Single Crystal Nickel-Based Superalloy During Tensile Creep
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    摘要:

    通過[001]取向鎳基單晶合金拉伸蠕變期間的組織形貌觀察,采用應力應變有限元方法計算出立方γ/γ′兩相共格界面的von Mises應力分布,研究了合金在蠕變期間γ′相的定向粗化規(guī)律。結果表明,施加拉應力可改變立方γ/γ′兩相的應力分布,使不同晶面發(fā)生晶格收縮與擴張應變,其中,(001)晶面產生晶格收縮可排斥較大半徑的Al、Ti原子,(100)和(010)晶面沿平行于應力軸方向產生晶格擴張應變,可誘捕較大半徑的Al、Ti原子,是使其γ′相沿擴張晶格的法線定向生長成為類似篩網層狀結構的組織演化規(guī)律。并進一步提出蠕變期間發(fā)生元素擴散和γ′相定向生長的驅動力。

    Abstract:

    The microstructure of a [001] orientated single crystal Ni-based superalloy was observed during tensile creep. By the stress-strain finite element method (FEM) for calculating the von Mises stress distribution in the coherent interface of the cubic γ/γ′ phases, the influence of the applied stress on the regularity of γ′ phase directional coarsening was investigated. Results show that the distribution of the von Mises stress in the cubic γ/γ′ interfaces is changed by the applied tensile stress, which may bring the lattice contraction or expanding of the various crystal planes in the cubical γ′ phase. Thereinto, the lattice contraction strain on (001) plane may repel the Al and Ti atoms with bigger radius, while the lattice expanding strain on (100) and (010) planes may trap the Al and Ti atoms to promote the directional growth of γ′ phase into the mesh-like layer structure along the normal of the expanding lattice. This is thought to be the regularity of γ′ phase directional coarsening during creep of the alloy. Furthermore, the driving force of the elements diffusing and γ′ phase directional coarsening was proposed.

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張姝.單晶鎳基合金在拉伸蠕變期間的組織演化與分析[J].稀有金屬材料與工程,2012,41(1):28~32.[Zhang Shu. Microstructure Evolution and Analysis Single Crystal Nickel-Based Superalloy During Tensile Creep[J]. Rare Metal Materials and Engineering,2012,41(1):28~32.]
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  • 收稿日期:2010-06-04
  • 最后修改日期:2010-08-26
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  • 在線發(fā)布日期: 2012-01-06
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