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首页> 外文期刊>Materials Characterization >Microstructure and mechanical properties of bimodal Ti-Bi alloys fabricated by mechanical alloying and spark plasma sintering for biomedical applications
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Microstructure and mechanical properties of bimodal Ti-Bi alloys fabricated by mechanical alloying and spark plasma sintering for biomedical applications

机译:用于机械合金化和火花等离子体烧结制造的双峰Ti-Bi合金的微观结构和力学性能

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摘要

In this study, the bimodal Ti-xBi (x = 0, 0.5, 1, 3 and 5 at.%) alloys were fabricated using mechanical alloying (MA) and spark plasma sintering (SPS) from elemental powders. The microstructure evolution of mechanical alloyed (MAed) powders as well as the effect of Bi content on microstructure and mechanical properties of Ti-Bi alloys are investigated. The Ti-Bi alloys showed bimodal structure consisting coarse grains (CG) region in "core" and ultrafine grains (UFG) region in "shell". The Ti-Bi matrix was alpha-Ti with hexagonal close-packed (HCP) structure while Bi-riched phase was identified as beta-Ti with body-centered cubic (BCC) structure. The mechanical properties showed that the as-built bimodal alloys had high strength and large plastic deformation. The Ti-Bi alloys showed similar to 22%-44% higher compressive yield strength compared with commercially pure Ti (CP-Ti) alloy for same the ball-milling time, and strengthening mechanisms are mainly ascribed to grain boundary strengthening and solid solution strengthening. When Bi content was 0.5%, the alloy exhibited excellent comprehensive mechanical properties with high compressive strength (compressive yield strength of -1080 MPa, ultimate compressive strength of similar to 2226 MPa) and excellent ductility (fracture strain of similar to 34.3%).
机译:在该研究中,使用机械合金化(MA)和来自元素粉末的火花血浆烧结(SPS)制造双峰Ti-Xbi(x = 0,0.5,1,3和5和5.%)。研究了机械合金(MAED)粉末的微观结构演化以及BI含量对Ti-Bi合金微观结构和机械性能的影响。 Ti-Bi合金显示双峰结构,将粗粒(CG)区域组成为“核心”和“壳”中的“壳”。 Ti-Bi基质是α-Ti,具有六边形紧密填充(HCP)结构,而BE致富相相用体为中心的立方(BCC)结构鉴定为β-TI。机械性能表明,竣工双峰合金具有高强度和大的塑性变形。与相同的球磨时间相同的商业纯Ti(CP-Ti)合金相比,Ti-Bi合金显示出与商业纯Ti(CP-Ti)合金相比的22%-44%,并且强化机制主要归因于晶界强化和固溶强化。当双含量为0.5%时,该合金具有优异的综合机械性能,具有高抗压强度(压缩屈服强度为-1080MPa,最终抗压强度,类似于2226MPa)和优异的延展性(相似的裂缝株与34.3%相似)。

著录项

  • 来源
    《Materials Characterization》 |2020年第2020期|共11页
  • 作者单位

    Shanghai Jiao Tong Univ Sch Mat Sci &

    Engn Shanghai Key Lab Adv High Temp Mat &

    Precis Formi Shanghai 200240 Peoples R China;

    Shanghai Jiao Tong Univ Sch Mat Sci &

    Engn Shanghai Key Lab Adv High Temp Mat &

    Precis Formi Shanghai 200240 Peoples R China;

    Shanghai Jiao Tong Univ Sch Mat Sci &

    Engn Shanghai Key Lab Adv High Temp Mat &

    Precis Formi Shanghai 200240 Peoples R China;

    Shanghai Jiao Tong Univ Sch Mat Sci &

    Engn Shanghai Key Lab Adv High Temp Mat &

    Precis Formi Shanghai 200240 Peoples R China;

    Shanghai Jiao Tong Univ Sch Mat Sci &

    Engn Shanghai Key Lab Adv High Temp Mat &

    Precis Formi Shanghai 200240 Peoples R China;

    Shanghai Jiao Tong Univ Sch Mat Sci &

    Engn Shanghai Key Lab Adv High Temp Mat &

    Precis Formi Shanghai 200240 Peoples R China;

    Shanghai Inst Technol Sch Mech Engn Shanghai 201418 Peoples R China;

    Shanghai Jiao Tong Univ Sch Mat Sci &

    Engn Shanghai Key Lab Adv High Temp Mat &

    Precis Formi Shanghai 200240 Peoples R China;

    Shanghai Jiao Tong Univ Sch Mat Sci &

    Engn Shanghai Key Lab Adv High Temp Mat &

    Precis Formi Shanghai 200240 Peoples R China;

    Shanghai Jiao Tong Univ Sch Mat Sci &

    Engn Shanghai Key Lab Adv High Temp Mat &

    Precis Formi Shanghai 200240 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

    Ti-Bi alloys; Mechanical alloying; SPS; Bimodal structure;

    机译:TI-BI合金;机械合金化;SPS;双峰结构;

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