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Processing, microstructure, and mechanical properties of (Nb)/Nb5Si3 two-phase alloys

机译:(Nb)/ Nb5 Si3 两相合金的加工,组织和力学性能

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摘要

It has been shown that a fine lamellar structure composed of Nb solid solution, (Nb), and Nb5Si3 is formed through eutectoid decomposition in the Nb-Si binary system and its ternary derivatives. Such alloys would exhibit a high strength at over 1400 K, yet showing room-temperature toughness of over 10 to 20 MPa m1/2 if a proper lamellar spacing is chosen. In the present work, effects of processing on the microstructure evolution and mechanical properties are investigated on the Nb-18 at. pct Si alloys prepared by hot pressing (HP) and spark-plasma sintering (SPS). The powders used in the present work are of pure Nb and Nb5Si3 in order for the fabrication to become possible at temperatures higher than the melting point of Si and to reduce the formation of SiO2. The results show that the SPS yields more uniform two-phase microstructure but the alloy fabricated through HP tends to provide higher elevated temperature strength.
机译:结果表明,在Nb-Si二元体系及其三元导数中,通过共析分解形成了由Nb固溶体,(Nb)和Nb5 Si3 组成的精细层状结构。如果选择适当的层状间距,则此类合金在1400 K以上时将显示出高强度,而在室温下的韧性则超过10至20 MPa m1 / 2。在目前的工作中,在Nb-18 at上研究了加工对组织演变和力学性能的影响。通过热压(HP)和火花等离子体烧结(SPS)制备的pct硅合金。当前工作中使用的粉末是纯Nb和Nb5 Si3 ,以便在高于Si熔点的温度下进行制造并减少SiO2的形成。 。结果表明,SPS可产生更均匀的两相微观结构,但通过HP制备的合金倾向于提供更高的高温强度。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2005年第3期|483-488|共6页
  • 作者单位

    the Department of Materials Science and Engineering Interdisciplinary Graduate School of Science and Engineering Tokyo Institute of Technology 226-8502 Yokohama Japan;

    the Department of Materials Science and Engineering Interdisciplinary Graduate School of Science and Engineering Tokyo Institute of Technology 226-8502 Yokohama Japan;

    the Petroleum Association of Japan Chiyoda-ku 100-0004 Tokyo Japan;

    the Department of Materials Science and Engineering University of Wisconsin-Madison 53706 Madison WI;

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