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近α钛合金冷却过程的块状转变机制研究
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1.西部超导材料科技股份有限公司;2.西北工业大学材料学院

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Investigation of massive transformation mechanisms in near α titanium alloy during cooling
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1.Western Superconducting Technologies Co,Ltd,Xi’an;2.State Key Laboratory of Solidification Processing,Northwestern Polytechnical University,Xi’an

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    摘要:

    在近α型Ti60钛合金两相区淬火过程中,对初生α相αP周围形成的块转组织αm进行表征研究,块转组织αm与αP存在明显的界面,合金元素Al、Sn和Zr浓度介于αP和β基体之间,EBSD分析结果表明αm取向与αP保持一致。在冷却过程中,αP周围β基体中合金元素扩散收到限制,进而在局部过渡成分区域通过扩散转变形成αm组织。当固溶温度从1040℃提高至1060℃,同时保温时间从30分钟减少为5min,溶质元素扩散受限,αm体积分数从5.2%提升至30.7%

    Abstract:

    A kind of massive microstructure αm along the primary α phase(αP) has been characterized in the microstructure quenched from the α+β phase field. The obvious interface between αm and αP can be realized under the optical observation, and the concentrations of Al, Sn, Zr elements in αm are in between the αP and β matrix, but the orientation of the αm keeps consistent with the αP as evidenced by EBSD analysis. The appearence of the αm is considered as the result of limited diffusion controlled transformation from the β phase during the cooling, becasue the αm initiates from the α/β interface and keeps the consistent orientation with αP, and the growth is limited around the α/β interface. As the diffusion is limited by decreasing the solution periods from 30min to 5min, and the dissolving of αP is accelerated by increasing the solution temperature from 1040℃ to 1060℃, the volume fraction of αm increases from 5.2% to 30.7% significantly

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孙峰,刘向宏,李金山,王凯旋,张丰收.近α钛合金冷却过程的块状转变机制研究[J].稀有金属材料与工程,2020,49(1):68~74.[Feng Sun, Xianghong Liu, Jinshan Li, Kaixuan Wang, Fengshou Zhang. Investigation of massive transformation mechanisms in near α titanium alloy during cooling[J]. Rare Metal Materials and Engineering,2020,49(1):68~74.]
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历史
  • 收稿日期:2018-08-10
  • 最后修改日期:2018-11-13
  • 录用日期:2018-12-05
  • 在线发布日期: 2020-02-16
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