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非连续TiB+TiC颗粒增强钛基复合材料的剧烈塑性变形行为
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上海交通大学 金属基复合材料国家重点实验室,上海交通大学 金属基复合材料国家重点实验室,上海交通大学 金属基复合材料国家重点实验室,上海交通大学 金属基复合材料国家重点实验室,上海交通大学 金属基复合材料国家重点实验室,上海交通大学 金属基复合材料国家重点实验室

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国家自然科学基金资助(项目号51371114, 51501112), 中国博士后基金特别资助(项目号: 2015T80431)


The Severe Plastic Deformation of Discontinuously TiB+TiC Reinforced Titanium Matrix Composites
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    摘要:

    针对TiB+TiC陶瓷颗粒增强钛合金提出一种新的强塑性变形方法,即将等径弯曲通道变形应用到非连续增强钛基复合材料中。本文采用通道夹角Φ=120°成功地实现了(TiB+TiC)/Ti6Al4V钛基复合材料1~4道次Bc路径的ECAP变形,研究了剧烈塑性变形对微观组织演化和力学性能的影响。结果表明,剧烈塑性变形可以实现TiB纤维和TiC颗粒的细化,以及基体晶粒的细化;随着挤压次数的增加,基体中偏聚的TiB细长纤维和TiC大颗粒也随着挤压道次的增加也逐渐趋于均匀化,力学性能也得到了提高,抗拉强度能够提高至1205MPa,延伸率与挤压1道次相比也得到了明显提高。

    Abstract:

    In this study, a new severe plastic deformation method, equal channel angular pressing (ECAP), was applied to strengthen a discontinuously TiB+TiC reinforced titanium alloy. The microstructural evolution mechanism during severe plasitic deformation processing was systematicly studied. Special attention was focused on the grain refinement, the deformation mechnism and formation mechnism in the preparation of ultrafine grain composite. The results indicated that the refinement of TiB fibers and TiC particles could be obtained, as well as the grain size of the matrix alloy. With the increasing of ECAP pass numbers, the clustered long TiB fibers and TiC big particles were also homogenized in the matrix, resulting in the increase of the mechanical properties. The tensile strength is up to 1205MPa, and the elongation improves comparing with the first ECAP pass.

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韩远飞,李九霄,黄光法,毛建伟,王立强,吕维洁.非连续TiB+TiC颗粒增强钛基复合材料的剧烈塑性变形行为[J].稀有金属材料与工程,2017,46(S1):56~60.[Han Yuanfei, Li Jiuxiao, Xiang Juan, Huang Guangfa, Wang Liqiang, Lu Weijie. The Severe Plastic Deformation of Discontinuously TiB+TiC Reinforced Titanium Matrix Composites[J]. Rare Metal Materials and Engineering,2017,46(S1):56~60.]
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  • 收稿日期:2016-05-11
  • 最后修改日期:2016-05-11
  • 录用日期:2017-08-08
  • 在线发布日期: 2017-12-13
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