In situ reaction synthesis, electrical and thermal, and mechanical properties of Nb4AlC3

被引:113
|
作者
Hu, Chunfeng [1 ,2 ]
Li, Fangzhi [1 ,2 ]
He, Lingfeng [1 ,2 ]
Liu, Mingyue [1 ]
Zhang, Jie [1 ,2 ]
Wang, Jiemin [1 ,2 ]
Bao, Yiwang [1 ]
Wang, Jingyang [1 ]
Zhou, Yanchun [1 ]
机构
[1] Chinese Acad Sci, Inst Met Res, Shenyang Natl Lab Mat Sci, Shenyang 110016, Peoples R China
[2] Chinese Acad Sci, Grad Sch, Beijing 100039, Peoples R China
关键词
D O I
10.1111/j.1551-2916.2008.02424.x
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
In this work, a bulk Nb(4)AlC(3) ceramic was prepared by an in situ reaction/hot pressing method using Nb, Al, and C as the starting materials. The reaction path, microstructure, physical, and mechanical properties of Nb(4)AlC(3) were systematically investigated. The thermal expansion coefficient was determined as 7.2 x 10(-6) K(-1) in the temperature range of 200 degrees-1100 degrees C. The thermal conductivity of Nb(4)AlC(3) increased from 13.5 W.(m.K)(-1) at room temperature to 21.2 W.(m.K)(-1) at 1227 degrees C, and the electrical conductivity decreased from 3.35 x 10(6) to 1.13 x 10(6) Omega(-1).m(-1) in a temperature range of 5-300 K. Nb(4)AlC(3) possessed a low hardness of 2.6 GPa, high flexural strength of 346 MPa, and high fracture toughness of 7.1 MPa.m(1/2). Most significantly, Nb(4)AlC(3) could retain high modulus and strength up to very high temperatures. The Young's modulus at 1580 degrees C was 241 GPa (79% of that at room temperature), and the flexural strength could retain the ambient strength value without any degradation up to the maximum measured temperature of 1400 degrees C.
引用
收藏
页码:2258 / 2263
页数:6
相关论文
共 50 条
  • [1] Thermodynamic properties of Nb4AlC3
    Ding, Ai-Ling
    Yu, Wen-Bin
    Li, Chun-Mei
    Chen, Zhi-Qian
    RESEARCH IN MECHANICAL ENGINEERING AND MATERIAL SCIENCE, 2014, 456 : 442 - 446
  • [2] Mechanical and thermal properties and microstructural evolution of Ta-doped Nb4AlC3
    Cai, Ping
    He, Qiming
    Yang, Lihui
    Huang, Zhengren
    Liu, Xuejian
    Yin, Jie
    Huang, Yihua
    CERAMICS INTERNATIONAL, 2019, 45 (08) : 9799 - 9806
  • [3] Physical and mechanical properties of highly textured polycrystalline Nb4AlC3 ceramic
    Hu, Chunfeng
    Sakka, Yoshio
    Nishimura, Toshiyuki
    Guo, Shuqi
    Grasso, Salvatore
    Tanaka, Hidehiko
    SCIENCE AND TECHNOLOGY OF ADVANCED MATERIALS, 2011, 12 (04)
  • [4] Enhanced mechanical properties of W-doped Nb4AlC3 ceramics
    Cai, Ping
    He, Qiming
    Wu, Xishi
    Liu, Xuejian
    Liu, Yan
    Yin, Jie
    Huang, Yihua
    Huang, Zhengren
    CERAMICS INTERNATIONAL, 2018, 44 (16) : 19135 - 19142
  • [5] Mechanical properties and oxidation behavior of Ti-doped Nb4AlC3
    Gu, Jian
    Pan, Limei
    Yang, Jian
    Yu, Lei
    Zhang, Haibin
    Zou, Wenjie
    Xu, Canhui
    Hu, Chunfeng
    Qiu, Tai
    JOURNAL OF THE EUROPEAN CERAMIC SOCIETY, 2016, 36 (04) : 1001 - 1008
  • [6] Hot forging Nb4AlC3 ceramics with enhanced properties
    Yu, Ye
    Fu, Shuai
    Wan, Detian
    Bao, Yiwang
    Chu, Longsheng
    Feng, Qingguo
    Hu, Chunfeng
    JOURNAL OF ADVANCED CERAMICS, 2023, 12 (11): : 2032 - 2040
  • [7] Low temperature thermal expansion, high temperature electrical conductivity, and mechanical properties of Nb4AlC3 ceramic synthesized by spark plasma sintering
    Hu, Chunfeng
    Sakka, Yoshio
    Tanaka, Hidehiko
    Nishimura, Toshiyuki
    Grasso, Salvatore
    JOURNAL OF ALLOYS AND COMPOUNDS, 2009, 487 (1-2) : 675 - 681
  • [8] Study on mechanical properties of NbC reinforced Nb4AlC3 composites prepared by in situ hot-pressing sintering
    Yang, J. (yangjian1976@163.com), 1600, Chinese Ceramic Society (43):
  • [9] Microstructure and mechanical properties of Nb4AlC3 MAX phase synthesized by reactive hot pressing
    Julian-Jankowiak, A.
    Sallot, P.
    CERAMICS INTERNATIONAL, 2018, 44 (14) : 16314 - 16324
  • [10] MAX Phase (Nb4AlC3) For Electrocatalysis Applications
    Gandara, Meriene
    Mladenovic, Dusan
    Martins, Marta de Jesus Oliveira
    Rakocevic, Lazar
    de Assis, Joao Marcos Kruszynski
    Sljukic, Biljana
    Goncalves, Emerson Sarmento
    SMALL, 2024, 20 (29)