Abstract No.:
4800

 Scheduled at:
Wednesday, May 11, 2016, Yellow River Hall 4:20 PM
Aviation Industry III


 Title:
Investigations on the nature of ceramic deposits in plasma spray-physical vapor deposition

 Authors:
Wenting He* / Forschungszentrum Jülich GmbH, Germany
Georg Mauer / Forschungszentrum Jülich GmbH, IEK-1, Germany
Robert Vaßen/ Forschungszentrum Jülich GmbH, IEK-1, Germany
Olivier Guillon/ Forschungszentrum Jülich GmbH, IEK-1, Germany
Malko Gindrat/ Oerlikon Metco AG, Switzerland
Reto Wäger/ Helbling Technik AG, Switzerland

 Abstract:
In Plasma Spray-Physical Vapor Deposition (PS-PVD) process, major fractions of the powder feedstock can be evaporated so that coatings are deposited mainly from vapor phase. In this work, Computational Fluid Dynamics results confirm former calculations indicating 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 nano-sized clusters produced at two spraying distances of 1000 mm and 400 mm. SEM images show that, at long spraying distance, many small nano-sized particles (<20 nm) which are significantly smaller than primary particles in powder feedstock (30 to 180 nm) cover the coating surface in the center of the plasma jet. However, at short spraying distance, such small nano-sized particles were hardly found. Besides, in the center area of the plasma jet, XRD patterns indicate only limited preferential growth orientation at long spraying distance which might be a consequence of the low mobility of nano-sized cluster deposits. Meanwhile, at short spraying distance, XRD patterns show obvious preferred growth orientation along (110) crystal orientation. The results give a further insight in the formation mechanisms of high quality columnar structured PS-PVD coatings which have already shown excellent performance in cyclic life time tests.


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