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- W69742785 abstract "Material processing using nano-technology is now advancing towards a more precise and controllable smart stage. Regarding thermal processing, the plasma system with high precise, has been proposed for advanced thermal processing. The gas tunnel type plasma system developed by the author exhibits high energy density and also high efficiency. Among its various applications is the plasma spraying of ceramics such as Al 2 O 3 and ZrO 2 . The characteristics of these ceramic coatings are superior to conventional ones. Another type of plasma generator is the high speed plasma accelerator developed at the University of Belgrade. It is operated in a low vacuum condition or with residual gas at low and high pressures. These systems are capable of generating high energy plasma flows of required composition within a large range of plasma parameters. Therefore this type of plasma accelerator will be also expected to be useful for advanced materials processing. In this paper, at first, the various types of plasma accelerators are described: Magnetoplasma Compressor of Compact Geometry (MPC-CG); MPC-Yu type; one stage Erosive Plasma Dynamic system (EPDS) and double stage Quasi-Stationary High Current Plasma Accelerator (QHPA) (in final stage of construction). The plasma flow produced by MPC-CG was used to investigate plasma flow interaction with solid silicon surfaces. Different types of submicron structure were obtained. Regarding the gas tunnel type plasma system, the performance such as the mechanical properties, thermal behavior and high temperature oxidation resistance of the alumina/zirconia functionally graded TBCs produced by spraying are described and discussed. The ZrO 2 composite coating has the possibility for the development of high functionally graded TBC (thermal barrier coating). The results showed that the alumina/zirconia composite system exhibited an improvement of mechanical properties and oxidation resistance. Also tungsten coating was introduced as one of heat resistant materials. Another application of gas tunnel type plasma is for the surface modification of metals. For example TiN films were formed in a short time of 5 s. And, the thick TiN coatings were obtained by gas tunnel type plasma reactive spraying. In this paper, the emphasis is on the explanation of the concepts and the features of these plasma systems and a description of the applications to the thermal processing." @default.
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- W69742785 date "2008-12-01" @default.
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- W69742785 title "Novel Plasma Generators for Advanced Thermal Processing" @default.
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