Synthesis, microstructure and electromagnetic wave absorption properties of high-entropy carbide powders

被引:16
|
作者
Zhang, Jiatai [1 ]
Wang, Weili [1 ]
Zhang, Zhixuan [1 ]
Chen, Jianqi [1 ]
Sun, Xiaoning [1 ]
Sun, Guoxun [1 ]
Liang, Yanjie [1 ]
Han, Guifang [1 ]
Zhang, Weibin [1 ]
机构
[1] Shandong Univ, Sch Mat Sci & Engn, Key Lab Liquid Solid Struct Evolut & Proc Mat, Minist Educ, Jinan 250061, Peoples R China
关键词
High-entropy ceramics; Transition metal carbides; Electromagnetic wave absorption; Electromagnetic parameters; MICROWAVE-ABSORPTION; HOLLOW SPHERES; CERAMICS; GRAPHENE; COMPOSITES; STABILITY; TI3C2TX; FE; ZN;
D O I
10.1016/j.jallcom.2023.171593
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
With the continuous development of microwave technology, the electromagnetic (EM) environment we face is becoming increasingly complex. EM wave absorbing materials, which convert EM wave energy into other forms of energy such as thermal energy, have attracted much attention in EM shielding technology for reducing and isolating EM interference. Finding absorbing materials with both strong and wideband absorption performance in 2-18 GHz is particularly important. In this paper, (Zr0.2Ti0.2Hf0.2Ta0.2Cr0.2)C, (Zr0.2Ti0.2Hf0.2Ta0.2Ni0.2)C, (Zr0.2Ti0.2Hf0.2Nb0.2Cr0.2)C and (Zr0.2Ti0.2Hf0.2Nb0.2Ni0.2)C high-entropy carbide powders were prepared through calculation and design, and their properties were compared with TaC and NbC. According to the analysis of phase composition, microstructure, and EM wave absorption performance, the prepared high-entropy carbides have formed single-phase solid solutions, and their absorption performance has been improved. It can be noted that (Zr0.2Ti0.2Hf0.2Nb0.2Ni0.2)C has the minimum reflection loss (RL) of -42.61 dB, and it has the maximum effective absorption bandwidth (EAB) of 3.60 GHz at the thickness of 1.00 mm. Through the analysis of EM parameters, it was found that high-entropy carbides with different compositions changed the dielectric loss, magnetic loss, and their coupling effect. This provides important insights for designing absorbing materials with ultra-thin and good conductivity.
引用
收藏
页数:12
相关论文
共 50 条
  • [1] Synthesis and electromagnetic wave absorbing properties of high-entropy metal diboride-silicon carbide composite powders
    Yubo Gong
    Zhigang Yang
    Xuguang Wei
    Shaolei Song
    Shiqing Ma
    Journal of Materials Science, 2022, 57 : 9218 - 9230
  • [2] Synthesis and electromagnetic wave absorbing properties of high-entropy metal diboride-silicon carbide composite powders
    Gong, Yubo
    Yang, Zhigang
    Wei, Xuguang
    Song, Shaolei
    Ma, Shiqing
    JOURNAL OF MATERIALS SCIENCE, 2022, 57 (20) : 9218 - 9230
  • [3] Synthesis of high-entropy MXenes with high-efficiency electromagnetic wave absorption
    Qiao, Linjing
    Bi, Jianqiang
    Liang, Guandong
    Yang, Yao
    Wang, Hongyi
    Wang, Shaoyin
    JOURNAL OF ADVANCED CERAMICS, 2023, 12 (10): : 1902 - 1918
  • [4] Electromagnetic wave absorbing properties of high-entropy transition metal carbides powders
    Wang, Weili
    Sun, Guoxun
    Sun, Xiaoning
    Zhang, Zhixuan
    Zhang, Jiatai
    Liang, Yanjie
    Bi, Jianqiang
    MATERIALS RESEARCH BULLETIN, 2023, 163
  • [5] FeCoNiMnAl high-entropy alloy: Improving electromagnetic wave absorption properties
    Duan, Yuping
    Gao, Minmin
    Pang, Huifang
    Wang, Tongmin
    JOURNAL OF MATERIALS RESEARCH, 2021, 36 (10) : 2107 - 2117
  • [6] FeCoNiMnAl high-entropy alloy: Improving electromagnetic wave absorption properties
    Yuping Duan
    Minmin Gao
    Huifang Pang
    Tongmin Wang
    Journal of Materials Research, 2021, 36 : 2107 - 2117
  • [7] Advancements in high-entropy materials for electromagnetic wave absorption
    Yuan, Mingyue
    Weible, Alan H.
    Azadi, Fatemeh
    Li, Bangxin
    Cui, Jiacheng
    Lv, Hualiang
    Che, Renchao
    Wang, Xiaoguang
    MATERIALS HORIZONS, 2025, 12 (04) : 1033 - 1057
  • [8] Synthesis of single-phase high-entropy carbide powders
    Feng, Lun
    Fahrenholtz, William G.
    Hilmas, Gregory E.
    Zhou, Yue
    SCRIPTA MATERIALIA, 2019, 162 : 90 - 93
  • [9] Synthesis and electromagnetic wave absorption properties of FeCoNi(Si0.6Al0.2B0.2) high-entropy nanocrystalline alloy powders
    Li, Yanhui
    Shang, Shurui
    Zhang, Wei
    AIP ADVANCES, 2019, 9 (12)
  • [10] Enhanced properties of (TaNbTiV)C high-entropy carbide ceramics through controlled structure and morphology of high-entropy carbide powders
    Li, Haitao
    Chen, Ruoyu
    Liu, Feng
    Li, Chengxin
    Yang, Xiaoyan
    Li, Saisai
    Jia, Wenbao
    INTERNATIONAL JOURNAL OF APPLIED CERAMIC TECHNOLOGY, 2025, 22 (03)