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Grinding mechanism and mechanical properties of the in-situ synthesized Al2O3/TiAl composites

机译:原位合成的Al2O3 / Tial复合材料的研磨机理和力学性能

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摘要

In-situ synthesis of Al2O3/TiAl composite was carried out by mechanical milling of the pre-alloy Ti-45Al-7Nb-0.3W and TiO2 powder mixture and subsequent sintering by spark plasma sintering (SPS) technique. The mixed powders experienced the initial destructive breakage stage, cold welding package stage and breaking up of boulders stage during mechanical milling. The particle size obviously declined with the mechanical milling time increasing. The number-average diameter (D(1,0)) of as-milled powders rapidly reduced from 75.0 mu m to about 15.5 mu m, and its distribution uniformity (U) decreased to 0.55 when milling time increased to 20 h. Nano Al2O3 particles had been formed during milling. The as-SPSed compacts were mainly composed of gamma-TiAl phases, alpha(2)-Ti3Al phases and nano-Al2O3 particles that tended to disperse both on the grain boundaries and inside the lamellar microstructure of the matrix. The contents of Al2O3 increased from 4.3% to 8.9 vol% as the milling time increased from 10 to 20 h. The increasing concentration led to the increase in Vickers hardness of Al2O3/TiAl composites, and a maximum value of 6.2 GPa was achieved. A corrected mixture rule was constructed which can predict the hardness of the composites accurately. The ultimate compression strength (UCS) increased firstly and then decreased with prolonging milling time. The highest value of 1848 MPa was obtained when the mixed powders milled for 15 h, i.e., the fraction of Al2O3 in the TiAl matrix was 7.6 vol%.
机译:原位合成Al 2 O 3 / Tial复合物通过机械研磨通过预合金Ti-45Al-7nB-0.3W和TiO2粉末混合物和随后通过火花等离子体烧结(SPS)技术烧结。混合粉末在机械研磨期间经历了初始破坏性破裂阶段,冷焊接封装阶段,冷焊接封装阶段和巨石阶段的分解。粒度明显下降,机械研磨时间增加。当铣削时间增加到20小时至20小时时,AS-MICHED粉末的数平均直径(D(1,0))从75.0μm至约15.5μm迅速降低至约15.5μm,并且其分布均匀性(u)降低至0.55。在研磨过程中形成了纳米Al2O3颗粒。 AS-Spsed Compacts主要由γ-Tial相,α(2)-ti3相和纳米-Al2O3颗粒组成,所述α-al2O3颗粒倾向于在所述基质的层边界和层状微观结构内部分散。随着铣削时间从10%增加到20小时,Al2O3的含量从4.3%增加到8.9体积%。浓度的增加导致Al2O3 / Tial复合材料的维氏硬度的增加,并且达到了最大值为6.2GPa。构建校正的混合规则,其可以精确地预测复合材料的硬度。最终压缩强度(UCS)首先增加,然后随着延长研磨时间而降低。当混合粉末研磨15小时时,获得最高值1848MPa,即Tial基质中的Al 2 O 3的级分为7.6体积%。

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  • 来源
    《CERAMICS INTERNATIONAL》 |2019年第9期|共9页
  • 作者单位

    Chongqing Univ Sch Mat Sci &

    Engn Chongqing 400044 Peoples R China;

    Chongqing Univ Sch Mat Sci &

    Engn Chongqing 400044 Peoples R China;

    Chongqing Univ Sch Mat Sci &

    Engn Chongqing 400044 Peoples R China;

    Chongqing Univ Sch Mat Sci &

    Engn Chongqing 400044 Peoples R China;

    Cent S Univ Sch Aeronaut &

    Astronaut Changsha 410083 Hunan Peoples R China;

    Cent S Univ State Key Lab Powder Met Changsha 410083 Hunan Peoples R China;

    Cent S Univ State Key Lab Powder Met Changsha 410083 Hunan Peoples R China;

    Chinese Acad Sci Dalian Inst Chem Phys Div Energy Storage Zhongshan Rd 457 Dalian 116023 Peoples R China;

    Chongqing Univ Sch Mat Sci &

    Engn Chongqing 400044 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 陶瓷工业;硅酸盐工业;
  • 关键词

    Al2O3 particle; TiAl alloy; Powder metallurgy; Mechanical property;

    机译:Al2O3颗粒;Tial合金;粉末冶金;机械性质;

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