陳小龍

發布時間:2023-10-31 來源:太阳集团1088vip

姓 名:陳小龍

性 别:

研究方向:

[1]先進熱障塗層制備技術

(懸浮液等離子噴塗, SPS)/(大氣等離子噴塗, APS),(電子束物理氣相沉積, EBPVD)(超音速火焰噴塗, HVOF/超音速中溫噴塗, WS)

[2]高溫熱障塗層新材料與結構性能一體化設計;

[3]SOFC、半導體等領域特種功能陶瓷塗層制備技術與應用;

[4]超高溫用環境障塗層(Environmental Barrier CoatingEBC)材料與制備技術;

[5]陶瓷注漿成型與先進燒結成型技術

(放電等離子體燒結, SPS),高壓燒結,熱壓燒結等。

郵 箱:Xiaolong.CHEN@jnu.edu.cn

職稱及職務:副研究員

學習及工作經曆:

2017.9-至今   太阳集团app首页;

2013.7-2017.7 日本國立材料科學研究所 (NIMS),先進高溫材料、結構材料中心博士後;

2012.7-2013.7 中國科學院金屬研究所,金屬腐蝕與防護國家重點實驗室助理研究員;

2007.9-2012.7 中國科學院長春應用化學研究所,稀土資源利用國家重點實驗室理學博士(碩博連讀);

2003.9-2007.6 湖南師範大學(211工程)化學化工學院理學學士。

榮譽與獎勵:

[1] 2016年 國際熱噴塗期刊Journal of Thermal Spray Technology Outstanding Reviewer (傑出審稿人);

[2] 2015 日本熱噴塗學會研究獎勵賞(個人獲獎);

[3] 2013 吉林省科學技術一等獎(自然科學類)(排名第3);

[4] 2009 中國科學院三好學生

[5] 2006 湖南師範大學未來教育家競賽優勝獎。

主持科研項目:

[1] 國家自然科學基金-青年基金項目,無定形相的結晶與納米晶化對六鋁酸鹽熱障塗層熱物理性能影響的研究,項目編号: 51301180 (已結題)。

主要參與的科研項目:

[1]日本經濟産業省項目,面向高效率燃氣輪機新型懸浮液等離子噴塗高性能熱障塗層制備技術與低燃油成本下燃氣輪機渦輪葉片抗腐蝕長壽命熱障塗層開發;

[2]日立高技術公司合作項目,基于懸浮液等離子噴塗技術的半導體電子部件高性能抗等離子侵蝕塗層的開發;

[3]與東京大學合作的日本文部科學省項目,聲發射(Acoustic EmissionAE)實時探測熱噴塗陶瓷塗層内顯微裂紋的形成與擴展;

[4]中國科學院裝備研制項目,高性能防護塗層裝置研制;

[5]工信部基礎科研基金,EB-PVD用陶瓷靶材的研制;

[6]國家傑出青年科學基金,稀土新能源材料,項目編号:50825204

代表性研究論文(一作或通訊作者):

[1] X. Chen, S. Kuroda , T. Ohnuki, H. Araki, M. Watanabe, Y. Sakka, Effects of processing parameters on the deposition of yttria partially stabilized zirconia coating during suspension plasma spray, Journal of the American Ceramic Society, 99 [11] (2016) 3546-3555.

[2] X. Chen*, H. Honda, S. Kuroda*, H. Araki, H. Murakami, M. Watanabe, Y. Sakka, Highly segmented thermal barrier coatings deposited by suspension plasma spray: effects of spray process on microstructure, Journal of Thermal Spray Technology, 25[8] (2016) 1638-1649.

[3] X. Chen, T. Ohnuki, S. Kuroda , M. Gizynski, H. Araki, H. Murakami, M. Watanabe, Y. Sakka, Columnar and DVC-structured thermal barrier coatings deposited by suspension plasma spray: high-temperature stability and their corrosion resistance to the molten salt, Ceramics International, 42 (2016) 16822-16832.

[4] X. Chen*, X. Cao, B. Zou, J. Gong, C. Sun, Corrosion of lanthanum magnesium hexaaluminate as plasma-sprayed coating and as bulk material when exposed to molten V2O5-containing salt, Corrosion Science, 91(2015) 185-194.

[5] X. Chen*, X. Cao, B. Zou, J. Gong, C. Sun, High-temperature corrosion behavior of plasma sprayed lanthanum magnesium hexalumiante coating by vanadium oxide, Journal of the European Ceramic Society 35 (2015) 227-236.

[6] B. Zou, Y. Hui, W. Huang, S. Zhao, X. Chen*, J. Xu, S. Tao, Y.Wang, X. Cai, X. Cao*, Oxidation protection of carbon/carbon composites with a plasma-sprayed ZrB2–SiC–Si/Yb2SiO5/LaMgAl11O19 coating during thermal cycling, Journal of the European Ceramic Society 35 (2015) 2017-2025.Co-corresponding author

[7] X. Chen, Y. Zhang, X. Zhong, Z. Xu, J. Zhang, Y. Cheng, Y. Zhao, Y. Liu, X. Fan, Y. Wang, H. Ma, X. Cao, Thermal cycling behaviors of the plasma sprayed thermal barrier coatings of hexaluminates with magnetoplumbite structure, Journal of the European Ceramic Society 30 (2010) 1649–1657.

[8] X. Chen, Y. Zhao, W. Huang, H. Ma, B. Zou, Y.Wang, X. Cao, Thermal aging behavior of plasma sprayed LaMgAl11O19 thermal barrier Coating,” Journal of the European Ceramic Society 31 (2011) 2285–2294.

[9] X. Chen, Y. Zhao, X. Fan, Y. Liu, B. Zou, Y.Wang, H. Ma, X. Cao, Thermal cycling failure of new LaMgAl11O19/YSZ double ceramic top coat thermal barrier coating systems, Surface & Coatings Technology 205 (2011) 3293–3300.

[10] X. Chen, Y. Zhao, L. Gu, B. Zou, Y. Wang, X. Cao, Hot corrosion behaviour of plasma sprayed YSZ/LaMgAl11O19 composite coatings in molten sulfate–vanadate salt, Corrosion Science 53 (2011) 2335–2343.

[11] X. Chen, B. Zou, Y. Wang, H. Ma, X. Cao, Microstructure and thermal cycling behavior of air plas ma-sprayed YSZ/LaMgAl11O19 composite coatings, Journal of Thermal Spray Technology 20 (6) (2011) 1328–1338.

[12] X. Chen, L. Gu, B. Zou, Y. Wang, X. Cao, New functionally graded thermal barrier coating system based on LaMgAl11O19 /YSZ prepared by air plasma spraying,Surface & Coatings Technology 206 (2012) 2265-2274.