Investigations on the Nature of Ceramic Deposits in Plasma Spray-Physical Vapor Deposition

被引:33
作者
He, W. [1 ]
Mauer, G. [1 ]
Gindrat, M. [2 ]
Waeger, R. [3 ]
Vassen, R. [1 ]
机构
[1] Forschungszentrum Julich, IEK-1, D-52425 Julich, Germany
[2] Oerlikon Metco AG, CH-5610 Wohlen, Switzerland
[3] Helbling Tech AG, CH-5000 Aarau, Switzerland
关键词
CFD modeling; columnar-structured TBCs; deposition model; PS-PVD; PS-PVD; PHASE; COATINGS; NUCLEATION;
D O I
10.1007/s11666-016-0513-6
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
In Plasma Spray-Physical Vapor Deposition (PS-PVD) process, major fractions of the feedstock powder can be evaporated so that coatings are deposited mainly from the vapor phase. In this work, Computational Fluid Dynamics (CFD) results indicate that such evaporation occurs significantly in the plasma torch nozzle and even nucleation and condensation of zirconia is highly possible there. Experimental work has been performed to investigate the nature of the deposits in the PS-PVD process, in particular coatings from condensate vapor and nano-sized clusters produced at two spraying distances of 1000 mm and 400 mm. At long spraying distance, columns in the coatings have pyramidal tops and very sharp faceted microstructures. When the spraying distance is reduced to 400 mm, the tops of columns become relatively flat and a faceted structure is not recognizable. XRD patterns show obvious preferred orientations of (110) and (002) in the coatings sprayed at 400 mm but only limited texture in the coatings sprayed at 1000 mm. Meanwhile, a non-line of sight coating was also investigated, which gives an example for pure vapor deposition. Based on these analyses, a vapor and cluster depositions are suggested to further explain the formation mechanisms of high-quality columnar-structured PS-PVD thermal barrier coatings which have already shown excellent performance in cyclic lifetime test.
引用
收藏
页码:83 / 92
页数:10
相关论文
共 21 条
[1]   Growth of zirconia and yttria-stabilized zirconia nanorod arrays assisted by phase transition [J].
Chen, Chih-Chiang ;
Cheng, Wei-Yun ;
Lu, Shih-Yuan ;
Lin, Yi-Feng ;
Hsu, Yung-Jung ;
Chang, Kai-Shiun ;
Kang, Chao-Hsiang ;
Tung, Kuo-Lun .
CRYSTENGCOMM, 2010, 12 (11) :3664-3669
[2]   Deposition mechanisms of yttria-stabilized zirconia coatings during plasma spray physical vapor deposition [J].
Gao, Lihua ;
Wei, Liangliang ;
Guo, Hongbo ;
Gong, Shengkai ;
Xu, Huibin .
CERAMICS INTERNATIONAL, 2016, 42 (04) :5530-5536
[3]   HOMOGENEOUS NUCLEATION OF PARTICLES FROM THE VAPOR-PHASE IN THERMAL PLASMA SYNTHESIS [J].
GIRSHICK, SL ;
CHIU, CP .
PLASMA CHEMISTRY AND PLASMA PROCESSING, 1989, 9 (03) :355-369
[4]   Columnar-Structured Thermal Barrier Coatings (TBCs) by Thin Film Low-Pressure Plasma Spraying (LPPS-TF) [J].
Hospach, Andreas ;
Mauer, Georg ;
Vassen, Robert ;
Stoever, Detlev .
JOURNAL OF THERMAL SPRAY TECHNOLOGY, 2011, 20 (1-2) :116-120
[5]   Phase composition and its changes during annealing of plasma-sprayed YSZ [J].
Ilavsky, J ;
Stalick, JK .
SURFACE & COATINGS TECHNOLOGY, 2000, 127 (2-3) :120-129
[6]   Novel opportunities for thermal spray by PS-PVD [J].
Mauer, G. ;
Jarligo, M. O. ;
Rezanka, S. ;
Hospach, A. ;
Vassen, R. .
SURFACE & COATINGS TECHNOLOGY, 2015, 268 :52-57
[7]   Process Conditions and Microstructures of Ceramic Coatings by Gas Phase Deposition Based on Plasma Spraying [J].
Mauer, G. ;
Hospach, A. ;
Zotov, N. ;
Vassen, R. .
JOURNAL OF THERMAL SPRAY TECHNOLOGY, 2013, 22 (2-3) :83-89
[8]   Plasma Characteristics and Plasma-Feedstock Interaction Under PS-PVD Process Conditions [J].
Mauer, Georg .
PLASMA CHEMISTRY AND PLASMA PROCESSING, 2014, 34 (05) :1171-1186
[9]   Process development and coating characteristics of plasma spray-PVD [J].
Mauer, Georg ;
Hospach, Andreas ;
Vassen, Robert .
SURFACE & COATINGS TECHNOLOGY, 2013, 220 :219-224
[10]   Thin and Dense Ceramic Coatings by Plasma Spraying at Very Low Pressure [J].
Mauer, Georg ;
Vassen, Robert ;
Stoever, Detlev .
JOURNAL OF THERMAL SPRAY TECHNOLOGY, 2010, 19 (1-2) :495-501