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Ti-1300合金等温时效过程中相结构和组织转变
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贵州大学 材料与冶金学院,贵州大学 材料与冶金学院,西北有色金属研究院

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TG113.12

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国家自然科学基金资助(51401058)


Study on transformation of phase structure and Microstructure for Ti-1300 alloy during isothermal aging
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College of Materials and Metallurgy,Guizhou University,College of Materials and Metallurgy,Guizhou University,

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    摘要:

    采用OM、SEM、XRD和TEM等研究了固溶态Ti-1300合金在350~700℃等温时效过程中相结构和组织转变。结果表明,Ti-1300合金在350℃等温时效时,β相基体上开始弥散析出细小的颗粒状ω相,后期ω相消失,出现了片状的α相。亚稳β相的分解方式为:β→ω+β→α+β。在400℃等温时效1h时,亚稳β相分离出了β′相,继续保温,β′相消失,出现了细片状α相,亚稳β相的分解方式为:β→β′+β→α+β。在500℃~700℃等温时效时,α相在β晶界和晶粒内亚晶界上快速形核,随着保温时间的延长,晶界α相逐渐向晶内生长为α集束,随着时效温度升高,α相的片层越厚;亚稳β相的分解方式为:β→α+β。

    Abstract:

    The transformation of phase structure and microstructure for solution treated Ti-1300 alloy during isothermal aging between 350~700℃ were investigated using optical microscopy, scanning electron microscopy, X-ray diffraction and transmission electron microscopy analyses. Results show that the fine ellipsoidal ω phase formed in the Ti-1300 alloy at 350℃ firstly, then with the disappearing of ω phase, acicular α phase precipitates formed in the β matrix. The decomposition mechanism of this process was β→ω+β→α+β. The glabol β′ phase separated from the β matrix at 400℃ after 1h. With the increasing of holding time, the β′ phase could be served as the nucleation sites for α phase precipitates, thus leading to acicular α microstructure. And the decomposition mechanism was β→β′+β→α+β. After aging at 500℃~700℃, the decomposition mechanism of metastable β phase became as β→α+β. The nucleation site of the secondary α phase was mainly in the prior β grain boundaries and the internal nucleation of the prior β grain, and the grain boundary α phase with same orientation grew into α cluster gradually. Increasing the aging temperature, the thickness of α plate-like phase increased.

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万明攀,马瑞,赵永庆. Ti-1300合金等温时效过程中相结构和组织转变[J].稀有金属材料与工程,2018,47(4):1243~1247.[Wan Mingpan, Ma Rui, Zhao Yongqing. Study on transformation of phase structure and Microstructure for Ti-1300 alloy during isothermal aging[J]. Rare Metal Materials and Engineering,2018,47(4):1243~1247.]
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  • 收稿日期:2016-04-07
  • 最后修改日期:2016-05-29
  • 录用日期:2016-12-02
  • 在线发布日期: 2018-05-31
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