Aerosol Deposition of Ti3SiC2-MAX-Phase Coatings

被引:5
|
作者
Elsenberg, Andreas [1 ]
Gaertner, Frank [1 ]
Klassen, Thomas [1 ]
机构
[1] Helmut Schmidt Univ, Univ Fed Armed Forces, Holstenhofweg 85, D-22043 Hamburg, Germany
关键词
aerosol deposition; MAX-phase; process window; Ti3SiC2;
D O I
10.1007/s11666-021-01194-y
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
For the present study on Aerosol Deposition of MAX-phase materials, Ti3SiC2 was chosen as model system due to the availability of property data and commercial powder. The as-received powder was milled to different nominal sizes. For revealing details on coating formation and possible bonding mechanisms, Aerosol Deposition experiments were performed for different particle size batches and process gas pressures. Microstructural analyses reveal that coating formation preferably occurs for particle sizes smaller two microns. Using such small particle sizes, crack-free, dense layers can be obtained. The individual deposition efficiencies for the different particle sizes, particularly the critical size below which deposition gets prominent, vary with process gas flows and associated pressures. Detailed microstructural analyses of coatings by high-resolution scanning electron microscopy reveal plastic deformation and fracture, both attributing to shape adaption to previous spray layers and probably bonding. In correlation to coating thickness or deposition efficiencies, respective results give indications for possible bonding mechanisms and a tentative window of Aerosol Deposition for Ti3SiC2 MAX-phases as spray material.
引用
收藏
页码:1121 / 1135
页数:15
相关论文
共 50 条
  • [21] Influence of porosity on elastic properties of Ti2AlC and Ti3SiC2 MAX phase foams
    Tsipas, Sophia A. (stsipas@ing.uc3m.es), 1600, Elsevier Ltd (764):
  • [22] Aerosol Deposition of MAX Phase-Based Coatings onto High-Temperature Nickel Alloy
    S. S. Manokhin
    V. Yu. Barinov
    O. A. Golosova
    International Journal of Self-Propagating High-Temperature Synthesis, 2019, 28 : 210 - 212
  • [23] Aerosol Deposition of MAX Phase-Based Coatings onto High-Temperature Nickel Alloy
    Manokhin, S. S.
    Barinov, V. Yu.
    Golosova, O. A.
    INTERNATIONAL JOURNAL OF SELF-PROPAGATING HIGH-TEMPERATURE SYNTHESIS, 2019, 28 (03) : 210 - 212
  • [24] Optimization of the Carbosilicothermic Synthesis of the Ti4SiC3 MAX Phase
    E. I. Istomina
    P. V. Istomin
    A. V. Nadutkin
    V. E. Grass
    A. S. Bogdanova
    Inorganic Materials, 2018, 54 : 528 - 536
  • [25] Optimization of the Carbosilicothermic Synthesis of the Ti4SiC3 MAX Phase
    Istomina, E. I.
    Istomin, P. V.
    Nadutkin, A. V.
    Grass, V. E.
    Bogdanova, A. S.
    INORGANIC MATERIALS, 2018, 54 (06) : 528 - 536
  • [26] Biomass-derived nano-laminated Ti3SiC2 MAX phase
    Nou, Changwan
    Kim, Byeong Geun
    Suk, Soo-Young
    Choi, Soon-Mok
    RSC ADVANCES, 2022, 12 (50) : 32552 - 32556
  • [27] Synthesis of MAX-Phase Ti3SiC2 by Combined Powder Metallurgy Technique
    Sedanova, E. P.
    Arlashkin, I. E.
    Perevislov, S. N.
    Kashkarov, E. B.
    JOURNAL OF SURFACE INVESTIGATION, 2024, 18 (06): : 1436 - 1442
  • [28] Electric-field assisted ultrafast synthesis of Ti3SiC2 MAX phase
    Kiran, N. Usha
    Choudhary, Bishnu
    Trivedi, Ravi
    Chakraborty, Brahmananda
    Chatterjee, Sriparna
    Besra, Laxmidhar
    JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2022, 105 (12) : 7053 - 7063
  • [29] The Ti3SiC2 Max Phase Material for Q-Switched Pulse Generation
    Sahib, M. A. A. B.
    Zakaria, Rozalina
    Zulkipli, Nur Farhana
    Rosol, Ahmad H. A.
    Yasin, Moh
    Harun, Sulaiman Wadi
    JOURNAL OF RUSSIAN LASER RESEARCH, 2023, 44 (03) : 296 - 302
  • [30] High performance nanocomposites from Ti3SiC2 MAX phase and phthalonitrile resin
    Derradji, Mehdi
    Henniche, Abdelkhalek
    Wang, Jun
    Dayo, Abdul Qadeer
    Ouyang, Jia-hu
    Liu, Wen-bin
    Medjahed, Aboubakr
    POLYMER COMPOSITES, 2018, 39 (10) : 3705 - 3711