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载荷方式对双态Ti-55531合金变形和断裂的影响
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西北工业大学 凝固技术国家重点实验室,西北工业大学 凝固技术国家重点实验室,西北有色金属研究院,西北工业大学 凝固技术国家重点实验室,西北有色金属研究院,西北有色金属研究院

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国家自然科学基金资助(51471136);国家国际科技合作 (中法合作) 项目资助(015DF151430);陕西省科技统筹创新工程计划项目资助(2014KTCQ01-38);陕西省重点科技创新团队计划(2012KCT-23)。


Tension and torsion fracture failure behaviors of Ti-55531 alloy with bimodal structure
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State Key Laboratory of Solidification Processing,Northwestern Polytechnical University,Xi’an,State Key Laboratory of Solidification Processing,Northwestern Polytechnical University,Xi’an,Northwest Institute for Nonferrous Metal Research,Xi’an,State Key Laboratory of Solidification Processing,Northwestern Polytechnical University,Xi’an,Northwest Institute for Nonferrous Metal Research,Xi’an,Northwest Institute for Nonferrous Metal Research,Xi’an

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    摘要:

    通过室温静态拉伸和扭转试验,结合TEM、SEM等分析检测方法,系统研究了双态Ti-55531合金在拉伸和扭转载荷下的变形和断裂失效行为。结果表明,载荷方式对双态Ti-55531合金变形和断裂行为有显著的影响:首先,该合金扭转剪切强度较拉伸强度低约300MPa,表明该合金的断裂对扭转切应力的敏感性高于拉伸应力。其次,拉伸和扭转变形时,合金主要都受滑移和剪切共同控制,但相对拉伸变形扭转变形时等轴αp产生的剪切滑移带数量更多;且变形时晶界α和等轴αp的界面处易堆积高密度位错。最后,拉伸断口较扭转断口陡峭,拉伸断裂失效是以微孔聚集为主的穿晶断裂机制;而扭转断裂失效则是以微孔聚集和剪切开裂的混合断裂机制。

    Abstract:

    A combination of transmission electron microscopy and scanning electron microscopy was used to study deformation and fracture behavior of Ti-55531 alloy with bimodal microstructure (donated by BM Ti-55531 alloy) during tensile and torsion tests at room temperature. Results indicate that loading modes have a significant influence on deformation and fracture failure of BM Ti-55531 alloy. First of all, the tension strength is more about 300 MPa than torsion strength of BM Ti-55531 alloy, and its ductilty of tension is also higher. BM Ti-55531 alloy is more sensitive to tensile stress than torsion shear stress.Secondly, deformation mechanism of both tensile and torsion test are a mix mode which combines dislocation slip and shear, while deformation of torsion test was predominantly controlled by shear. These interfaces between net-like grain boundary α, primary α and retained β phases were easly filled with high density dislocations.Thirdly, fractographs of tensile and torsion tested specimens seem to possess different morphologies. Fractographs of tensile specimens are cliffier than torsion specimens. The tensile sample shows a ductile failure, including microvoid coalescence and inter-granular fracture mechanisms. The fracture of torsion specimen is still a mix mode type but with more shear dimples.

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黄朝文,赵永庆,辛社伟,曾卫东,李倩,周伟.载荷方式对双态Ti-55531合金变形和断裂的影响[J].稀有金属材料与工程,2017,46(S1):67~70.[Huang Chaowen, Zhao Yongqing, Xin Shewei, Zeng Weidong, Li Qian, Zhou Wei. Tension and torsion fracture failure behaviors of Ti-55531 alloy with bimodal structure[J]. Rare Metal Materials and Engineering,2017,46(S1):67~70.]
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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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