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退火工艺对TC6钛合金棒材显微组织和力学性能的影响
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中国科学院 金属研究所,中国科学院 金属研究所,中国科学院 金属研究所,中国科学院 金属研究所,中国科学院 金属研究所,中国科学院 金属研究所

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国家自然科学基金资助项目(59493300);教育部博士点基金资助项目(9800462)


Effects of annealing process on microstructure and mechanical properties of TC6 titanium alloy bars
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Institute of Metal Research,Chinese Academy of sciences,Institute of Metal Research,Chinese Academy of sciences,Institute of Metal Research,Chinese Academy of sciences,Institute of Metal Research,Chinese Academy of sciences,Institute of Metal Research,Chinese Academy of sciences,Institute of Metal Research,Chinese Academy of sciences

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    摘要:

    本文对比研究了退火温度、冷却方式及等温退火工艺对TC6钛合金棒材显微组织和力学性能的影响。结果表明:当在800~840 ℃退火空冷后,合金为等轴组织,强度随着温度增加而缓慢下降,当在880 ℃退火空冷后,β相中有次生α相析出,演变为双态组织,此时合金强度最大但塑性稍低,随着退火温度继续升高,组织明显粗化合金强度下降,超过相变点温度后组织演变为细针状魏氏组织,强度有所提高但塑性明显下降。当在800~1000 ℃退火炉冷后,组织演变和空冷试样组织有两处明显不同:首先,在相变点温度以下,形成双态组织的退火温度高于空冷样品,且β相中没有明显的次生α相析出;其次,在相变点温度以上,合金为层片状魏氏组织。炉冷样品的强度随退火温度增加而单调下降,塑性变化和空冷样品趋势一致,此外冲击韧性在880 ℃处理时最大。等温退火(880 ℃,2 h,炉冷到650 ℃,2 h,空冷)样品的力学性能与880 ℃退火炉冷后相近,强度、塑性和冲击韧性匹配较好。

    Abstract:

    Effects of annealing temperature, cooling mode and isothermal annealing process on microstructure and mechanical properties of TC6 titanium alloy bars were studied in this paper. The results show that when specimens were annealed at 800~840 ℃ with air cooling,equiaxed microstructure formed and strength decreased slightly with increasing annealing temperature. Bimodal microstructure formed due to secondary α phase precipitated in β matrix after annealing at 880 ℃ with air cooling, which led to the maximum strength and little decrease in plasticity. With annealing temperature further increasing, microstructure was coarsend obviously, so strength and plasticity decreased. Fine acicular Widmanstatten structure was obtained above the β transus, which led to increase in strength but significantly decrease in plasticity. When specimens were annealed at 800~1000 ℃ with furnace cooling, there are two obvious microstructure evolution differences between air-cooled and furnace-cooled specimens. Firstly, compared with air-cooled specimens, the annealing temperature of forming bimodal microstructure is higher and secondary α phase did not obviously precipitate in β matrix below the β transus. Secondly, lamellar Widmanstatten was obtained above the β transus. The strength of furnace-cooled specimens decreased with temperature increasing, and the change of plasticity was not significant. In addition, the maximum value of impact toughness occurred after annealing at 880 ℃ with furnace cooling. The excellent matching of strength, plasticity and impact toughness was obtained after isothermal annealing (880 ℃, 2 h, FC to 650 ℃, 2 h, AC), which was similiar to furnace-cooled specimen annealed at 880 ℃.

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雷晓飞,董利民,张志强,巴宏波,王海忠,杨锐.退火工艺对TC6钛合金棒材显微组织和力学性能的影响[J].稀有金属材料与工程,2017,46(S1):80~84.[Lei Xiaofei, Dong Limin, Zhang Zhiqiang, Ba Hongbo, Wang Haizhong, Yang Rui. Effects of annealing process on microstructure and mechanical properties of TC6 titanium alloy bars[J]. Rare Metal Materials and Engineering,2017,46(S1):80~84.]
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  • 收稿日期:2016-05-12
  • 最后修改日期:2016-05-12
  • 录用日期:2017-08-08
  • 在线发布日期: 2017-12-13
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