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Microstructure and tensile properties of TiCp/Ti6Al4V titanium matrix composites manufactured by laser melting deposition

机译:激光熔化沉积制造的TICP / Ti6Al4V钛基复合材料的微观结构和拉伸性能

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摘要

Laser melting deposition (LMD) technique was used to manufacture TiC particle (TiCp) reinforced Ti6Al4V (TiCp/Ti6Al4V) titanium matrix composites with TiC volume fraction ranging from 5% to 30%. The microstructure and tensile properties of as-deposited and heat-treated TiCp/Ti6Al4V composites were studied. Microstructure and tensile properties of TiCp/Ti6Al4V varied as the TiC volume fraction changing. The (i) microstructural evolution of TiCp/Ti6Al4V under different TiC volume fraction and (ii) the effect of heat treatment on modifying microstructure and properties of the composites were researched. Moreover, the strengthening mechanism and fracture mechanism of the composites were discussed. The results showed that composites were composed of a Ti, beta Ti, and TiC. The undissolved TiC particles were observed in all the composites. The strip-like eutectic TiC phases were observed in the composites when the volume fraction of TiC was 5%, while many dendritic primary TiC phases existed in the composites when the volume fraction of TiC exceeded 10%. When the heat treatment was held at 950 degrees C for 10 h, the basketweave microstructure and partly dissolved off strip-like eutectic TiC phases existed in the composites with 5 vol.% TiC. The strength of the TiCp/Ti6Al4V with 5% TiC volume fraction was improved by nearly 12.3% compared with that of the Ti6Al4V matrix alloys. Compared with that of the as-deposited composites, the ultimate tensile strength of TiCp/Ti6Al4V composites heat-treated at 950 degrees C decreased only from 1225.5 MPa to 1202.2 MPa. However, the elongation of heat-treated composites increased from 1.31% to 3.95%, which was attributed to the presence of both basketweave microstructure and dissolved off strip-like eutectic TiC. The fracture mechanism of TiCp/Ti6Al4V composites was quasi-cleavage fracture.
机译:激光熔化沉积(LMD)技术用于制造TIC颗粒(TICP)增强Ti6A14V(TICP / Ti6A14V)钛基复合材料,其具有5%至30%的TiC体积分数。研究了沉积和热处理的TICP / Ti6A4V复合材料的微观结构和拉伸性能。 TICP / Ti6Al4V的微观结构和拉伸性能随着TIC体积分数变化而变化。不同TIC体积分数下TICP / Ti6Al4V的(I)微观结构演化和(ii)研究了热处理对改变组合材料的微观结构和性质的影响。此外,讨论了复合材料的强化机理和断裂机理。结果表明,复合材料由Ti,βTi和TiC组成。在所有复合材料中观察到未溶解的TIC颗粒。当TiC的体积分数为5%时,在复合材料中观察到条形共晶TIC相,而当TIC的体积分数超过10%时,复合材料中存在许多树突初级TIC相。当热处理在950℃下保持10小时时,篮穿纤维微观结构并部分溶解在复合材料中存在于具有5体积%的复合材料中。%TiC。与Ti6Al4V矩阵合金相比,TICP / Ti6Al4V具有5%TiC体积分数的强度近12.3%。与沉积复合材料的相比,在950℃下热处理的TICP / Ti6Al4V复合材料的最终拉伸强度仅降低1225.5MPa至1202.2MPa。然而,热处理复合材料的伸长率从1.31%增加到3.95%,这归因于篮下微结构的存在并溶解脱离条状共晶TIC。 TICP / Ti6Al4V复合材料的断裂机制是准切割骨折。

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  • 作者单位

    Harbin Inst Technol State Key Lab Adv Welding &

    Joining 92 West Dazhi St Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol State Key Lab Adv Welding &

    Joining 92 West Dazhi St Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol State Key Lab Adv Welding &

    Joining 92 West Dazhi St Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol State Key Lab Adv Welding &

    Joining 92 West Dazhi St Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol State Key Lab Adv Welding &

    Joining 92 West Dazhi St Harbin 150001 Heilongjiang Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 一般性问题;工程材料学;
  • 关键词

    Composites; Microstructure; Strength; Laser melting deposition;

    机译:复合材料;微观结构;强度;激光熔化沉积;

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