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MATERIAL COATING USING ELECTROMAGNETICALLY ACCELERATED PLASMA JET

机译:电磁加速等离子体射流的材料涂层

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摘要

In magneto-plasma-dynamic (MPD) arcjet generators, plasma is accelerated by electromagnetic body forces. Two types of MPD arcjet generator were developed for applications to mullite, zirconia, titanium-nitride and silicon-nitride sprayings. The MPD spray process could successfully form dense, uniform and hard ceramic coatings. In titanium nitride reactive spraying, plasma diagnostic measurement and flowfield calculation were also carried out A large amount of N and N~+ was expected to be exhausted with a high velocity from the MPD generator. Both the electron temperature and the electron number density were kept high at a substrate position compared with those for conventional low-pressure thermal sprayings. A chemically active plasma with excited particles of N~+, Ti, Ti~+ and Ti~(2+) was considered to contribute to better titanium nitride coatings. The coating characteristics showed that the MPD arcjet generator had high potentials for material spraying.
机译:在磁等离子体动力(MPD)电弧喷射发生器中,等离子体被电磁体力加速。开发了两种类型的MPD电弧喷射发生器,用于莫来石,氧化锆,氮化钛和氮化硅喷涂。 MPD喷涂工艺可以成功形成致密,均匀且坚硬的陶瓷涂层。在氮化钛反应性喷涂中,还进行了等离子体诊断测量和流场计算。预计从MPD发生器高速排出大量的N和N〜+。与常规低压热喷涂相比,在基板位置处的电子温度和电子数密度都保持较高。具有N〜+,Ti,Ti〜+和Ti〜(2+)激发粒子的化学活性等离子体被认为有助于形成更好的氮化钛涂层。涂层特性表明,MPD电弧喷射发生器具有很高的材料喷涂潜力。

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