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针状Ti-55511合金热变形及后续退火过程中组织演变及其力学性能研究
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1.中南大学 粉末冶金国家重点实验室;2.湖南金天钛业科技有限公司

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国家重点研发项目(No. 2018YFB0704100),国家自然科学基金(NO. 51871242)


Chen Wei1,Lv Yaping2,Zhang Xiaoyong1*,Chen Chao1,Zhou Kechao1
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1.State Key Laboratory of Powder Metallurgy, Central South University, Lu Mountain South Road, Hunan, Changsha 410083, PR China;2.Hunan Goldsky Titanium Industry Technology Co.,Ltd, No. 97, Qianming Road, Deshan Town, Changde ECO-TECH Development Zone, Hunan Pro., China

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    摘要:

    对针状Ti–55511近β钛合金进行750 °C热轧和600 °C/1h退火,研究合金在热轧及退火中组织演变及力学性能。结果表明,热轧时,针片α相将发生动态再结晶(DRX),与β相的Burgers取向关系(Burgers orientation relationship)发生破坏,进而形成细小的等轴α相,使合金强度及塑性提高。后续退火过程中,α相通过静态再结晶(SRX)进一步发生球化和长大,次生α相析出,β相发生再结晶,合金的强度提高,塑性降低。在变形初期,针片α相内产生两种孪晶变体(交叉状孪晶),随着α相球化程度增加`,α相内将产生三种孪晶变体(针织状孪晶)。在后续退火过程中,这些孪晶将逐渐缩短,进而分解消失,表现在退火样品中α晶粒内存在纳米级孪晶(孪晶缩短)与层错(孪晶分解)。

    Abstract:

    Lamellar Ti–55511 near-beta Ti alloy was conducted on 750°C hot rolling and subsequent 600°C annealing to investigate the microstructure evolution and mechanical properties. The Burgers orientation relationship between α and β phase is broken down owing to dynamic recrystallization (DRX) of lamellar α phase during hot deformation, forming fine and equiaxed α plates, which leads to the increasing tensile strength and elongation. During annealing, secondary α grains are precipitated from β matrix, resulting in higher strength but lower elongation. Meanwhile, further spheroidization and growth of α phase via static recrystallization (SRX) happen during annealing. The recrystallization of β phase only happens in subsequent annealing rather than hot rolling. At the beginning of the deformation, two twin variants can be found in lamellar α phase. With an increase in deformation, three twin variants are formed in α phase. The nano-scaled twins and stacking fault was formed resulting from twins decomposing during annealing.

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陈维,吕亚平,张晓泳,陈超,周科朝.针状Ti-55511合金热变形及后续退火过程中组织演变及其力学性能研究[J].稀有金属材料与工程,2020,49(3):897~900.[陈维,Lv Yaping, zhangxiaoyong, chenchao, zhoukechao. Chen Wei1,Lv Yaping2,Zhang Xiaoyong1*,Chen Chao1,Zhou Kechao1[J]. Rare Metal Materials and Engineering,2020,49(3):897~900.]
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  • 收稿日期:2019-01-30
  • 最后修改日期:2019-07-12
  • 录用日期:2019-07-30
  • 在线发布日期: 2020-04-08
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