Comparison of the thermal transport property measurements of thermally sprayed coatings by the laser and xenon flash techniques

被引:4
作者
Chi, Weiguang [1 ]
Sampath, Sanjay
Wang, Hsin
机构
[1] SUNY Stony Brook, Ctr Thermal Spray Res, Stony Brook, NY 11794 USA
[2] Oak Ridge Natl Lab, High Temp Mat Lab, Oak Ridge, TN 37831 USA
基金
美国国家科学基金会;
关键词
laser flash; xenon flash; thermal diffusivity; MICROSTRUCTURE;
D O I
10.1007/s11666-007-9049-0
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Development of precise and reliable measurement methods is an important step in the study of the thermal transport property of inherently complex systems such as thermally sprayed coatings. In this study, the applicability and repeatability of both the laser and xenon flash techniques have been investigated through the measurements on the coatings made from ceramics, metals, alloys, and composites. For the four series of material systems, issues such as the effect of powder morphology, coating thickness, spraying technique, chemical composition, and oxidation on the thermal diffusivity as well as the corresponding measurement repeatability are assessed. This investigation provides information necessary for precise and reliable characterization of the thermal transport property of various thermally sprayed coatings.
引用
收藏
页码:444 / 448
页数:5
相关论文
共 50 条
  • [11] Oscillating Laser Post-Processing of NiCrCoFeCBSi/WC Thermally Sprayed Coatings
    Cernasejus, Olegas
    Skamat, Jelena
    Cepuke, Zivile
    Zhetessova, Gulnara
    Nikonova, Tatyana
    Zharkevich, Olga
    Visniakov, Nikolaj
    Berg, Alexandra
    MATERIALS, 2022, 15 (22)
  • [12] Development of a Thermal Transport Database for Air Plasma Sprayed ZrO2-Y2O3 Thermal Barrier Coatings
    Wang, Hsin
    Dinwiddie, Ralph B.
    Porter, Wallace D.
    JOURNAL OF THERMAL SPRAY TECHNOLOGY, 2010, 19 (05) : 879 - 883
  • [13] Microstructural Analysis and Transport Properties of Thermally Sprayed Multiple-Layer Ceramic Coatings
    Hsin Wang
    Govindarajan Muralidharan
    Donovan N. Leonard
    J. Allen Haynes
    Wallace D. Porter
    Roger D. England
    Michael Hays
    Gopal Dwivedi
    Sanjay Sampath
    Journal of Thermal Spray Technology, 2018, 27 : 371 - 378
  • [14] Microstructural Analysis and Transport Properties of Thermally Sprayed Multiple-Layer Ceramic Coatings
    Wang, Hsin
    Muralidharan, Govindarajan
    Leonard, Donovan N.
    Haynes, J. Allen
    Porter, Wallace D.
    England, Roger D.
    Hays, Michael
    Dwivedi, Gopal
    Sampath, Sanjay
    JOURNAL OF THERMAL SPRAY TECHNOLOGY, 2018, 27 (03) : 371 - 378
  • [15] Uncertainty of Thermal Diffusivity Measurements by Laser Flash Method
    B. Hay
    J. R. Filtz
    J. Hameury
    L. Rongione
    International Journal of Thermophysics, 2005, 26 : 1883 - 1898
  • [16] Uncertainty of thermal diffusivity measurements by laser flash method
    Hay, B
    Filtz, JR
    Hameury, J
    Rongione, L
    INTERNATIONAL JOURNAL OF THERMOPHYSICS, 2005, 26 (06) : 1883 - 1898
  • [17] Surface property modification of alumina sprayed coatings using Nd:YAG laser
    Moriya, Ryoko
    Iguchi, Mabito
    Sasaki, Shunichi
    Yan, Jiwang
    18TH CIRP CONFERENCE ON ELECTRO PHYSICAL AND CHEMICAL MACHINING (ISEM XVIII), 2016, 42 : 464 - 469
  • [18] Laser surface modification of plasma sprayed CYSZ thermal barrier coatings
    Ahmadi-Pidani, Raheleh
    Shoja-Razavi, Reza
    Mozafarinia, Reza
    Jamali, Hossein
    CERAMICS INTERNATIONAL, 2013, 39 (03) : 2473 - 2480
  • [19] Numerical Simulation of Thermal Diffusivity Measurements With the Laser-Flash Method to Evaluate the Effective Property of Composite Materials
    Potenza, M.
    Coppa, P.
    Corasaniti, S.
    Bovesecchi, G.
    JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 2021, 143 (07):
  • [20] Thermal Diffusivity Measurements of the Layered Materials by the Laser Flash Method
    Akoshima, Megumi
    Baba, Tetsuya
    Ogawa, Mitsue
    Tanaka, Takashi
    Harada, Yoshio
    Kawasaki, Akira
    Ono, Fumio
    MULTISCALE, MULTIFUNCTIONAL AND FUNCTIONALLY GRADED MATERIALS, 2010, 631-632 : 103 - +