会议论文详细信息
14th High-Tech Plasma Processes Conference
Pulsed arc plasma jet synchronized with drop-on-demand dispenser
Mavier, F.^1 ; Lemesre, L.^1 ; Rat, V.^1 ; Bienia, M.^1 ; Lejeune, M.^1 ; Coudert, J.-F.^1
Univ. Limoges, CNRS, ENSCI, SPCTS, UMR 7315, Limoges
F-87000, France^1
关键词: Cathode arc plasma;    Control of morphology;    Deposition efficiencies;    Individual droplets;    Nanostructured coatings;    Operating parameters;    Solution precursor plasma spraying;    Suspension plasma spraying;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/825/1/012009/pdf
DOI  :  10.1088/1742-6596/825/1/012009
来源: IOP
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【 摘 要 】

This work concerns with the liquid injection in arc plasma spraying for the development of finely structured ceramics coatings. Nanostructured coatings can be now achieved with nanopowders dispersed in a liquid (SPS: Suspension Plasma Spraying) or with a salt dissolved into a liquid (SPPS: Solution Precursor Plasma Spraying) injected into the plasma jet. Controlling electric arc instabilities confined in non-transferred arc plasma torch is therefore a key issue to get reproducible coating properties. Adjustment of parameters with a mono-cathode arc plasma allows a new resonance mode called "Mosquito". A pulsed arc plasma producing a periodic regular voltage signal with modulation of enthalpy is obtained. The basic idea is to synchronize the injection system with the arc to introduce the liquid material in each plasma oscillation in the same conditions, in order to control the plasma treatment of the material in-fly. A custom-developed pulsed arc plasma torch is used with a drop-on-demand dispenser triggered by the arc voltage. A delay is added to adjust the droplets emission time and their penetration into the plasma gusts. Indeed, the treatment of droplets is also shown to be dependent on this injection delay. A TiO2suspension and an aqueous solution of aluminium nitrate were optimized to get ejectable inks forming individual droplets. The feasibility of the process was demonstrated for SPS and SPPS techniques. Coatings from the suspension and the solution were achieved. First synchronized sprayings show a good penetration of the droplets into the plasma. Coatings show a fine structure of cauliflowers shapes. The synchronization of the ejection allows a control of morphology and a better deposition efficiency. Further investigations will find the optimal operating parameters to show the full potential of this original liquid injection technique.

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