Ab'/> Microstructural characterization and mechanical properties of a novel TiC-based cermet bonded with Ni <ce:inf loc='post'>3</ce:inf>(Al,Ti) and NiAl duplexalloy
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Microstructural characterization and mechanical properties of a novel TiC-based cermet bonded with Ni 3(Al,Ti) and NiAl duplexalloy

机译:用Ni 3 (AL,TI)和NIAL DUPLEALOY

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摘要

AbstractA novel TiC/Ni3(Al,Ti)-NiAl composite has been designed and synthesized byin-situreactive hot-pressing a mixture of Ti3AlC2and Ni powders. After hot-press sintering at 1500°C and 30MPa, almost fully dense composite was obtained and thein-situformed TiC grains were well-bonded with Ni3(Al,Ti) and NiAl alloys. Due to the nanolaminated structure in Ti3AlC2materials that weakly bonded Al layers are more prone to be out-diffused from Ti3AlC2lattice than that of Ti atoms. The deintercalated AlTi atoms would react with Ni to give rise to the formation of Ni3(Al,Ti) and NiAl alloys, and meanwhile a crystal lattice structure transformation happened from hexagonal Ti3AlC2to cubic lattice TiC. The formation of phases, grains morphologies, sintering behavior and mechanical properties were associated with sintering temperature. The as prepared TiC/Ni3(Al,Ti)-NiAl composite under 1500°C exhibited superior mechanical properties comparing with the counterparts fabricated under 1350°C and 1400°C because of the enhanced microstructures and eliminations of pores. Hardness, flexural strength and fracture toughness of the TiC/Ni3(Al,Ti)-NiAl composite at room temperature were determined as 9.9±0.35 GPa, 665±26 MPa and 10.23±0.4MPa·m1/2, respectively. Interestingly, the flexural strength and fracture toughness increases with temperature rising from 600 to 800°C, the maximum of flexural strength and fracture toughness could reach 775±25 MPa and 11.6±0.4 MPa·m1/2at 800°C.]]>
机译:<![cdata [ 抽象 一个新颖Tic / Ni 3 ( Al,Ti)-1ial复合材料已经设计和合成,由原位反应性热压的Ti 3 ALC 2 和NI粉末。在1500℃和30MPa的热压烧结后,获得几乎完全致密的复合材料,并且原位的形成的Tic晶粒与Ni 3 (Al,Ti)和Nial合金。由于Ti 3 ALC 2 弱粘结Al层的材料从Ti 3 ALC 2 格子比TI原子的of of inf>。蜕变的Alti原子会与Ni反应,产生Ni 3 (Al,Ti)和Nial合金,同时发生晶格结构转变来自六角形TI 3 ALC 2 到立方晶格TIC。相,晶粒形态,烧结行为和机械性能的形成与烧结温度有关。如1500°C下的ARM LOC =“POST”> 3 (AL,TI) - 综合,与1350°C和1400下方制造的对应物相比,卓越的机械性能表现出优越的机械性能°C由于增强的微观结构和孔的消除。 Tic / Ni 3 (Al,Ti) - 在室温中的复合材料的硬度,弯曲强度和骨折韧性确定为9.9±0.35GPa,665± 26 MPA和10.23±0.4MPA·M 1/2 。有趣的是,弯曲强度和断裂韧性随温度升高到800°C,弯曲强度和断裂韧性的最大值可达到775±25 MPa和11.6±0.4 MPa·M 1/2 在800°C。 ]]>

著录项

  • 来源
    《Materials Characterization》 |2018年第2018期|共8页
  • 作者单位

    Institute of Materials Science and Engineering School of Mechanical and Electronic Control Engineering Beijing Jiaotong University;

    Institute of Materials Science and Engineering School of Mechanical and Electronic Control Engineering Beijing Jiaotong University;

    Institute of Materials Science and Engineering School of Mechanical and Electronic Control Engineering Beijing Jiaotong University;

    Institute of Materials Science and Engineering School of Mechanical and Electronic Control Engineering Beijing Jiaotong University;

    Institute of Materials Science and Engineering School of Mechanical and Electronic Control Engineering Beijing Jiaotong University;

    Institute of Materials Science and Engineering School of Mechanical and Electronic Control Engineering Beijing Jiaotong University;

    Institute of Materials Science and Engineering School of Mechanical and Electronic Control Engineering Beijing Jiaotong University;

    Institute of Materials Science and Engineering School of Mechanical and Electronic Control Engineering Beijing Jiaotong University;

    Institute of Materials Science and Engineering School of Mechanical and Electronic Control Engineering Beijing Jiaotong University;

  • 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

    TiC-based cermets; Ti3AlC2; Microstructure; Ni3(Al; Ti); NiAl; High-temperature properties;

    机译:基于TiC的金属陶瓷;Ti3AlC2;微观结构;Ni3(Al;Ti);Nial;高温性能;

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