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Effect of different shroud principles on the performance of a NiTi coating produced by means of twin-wire arc spraying (TWAS) process

机译:不同护罩原理对通过双线电弧喷涂(TWA)工艺产生的Niti涂层性能的影响

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The super-elasticity behavior of a NiTi-shape memory alloy (SMA) is very promising regarding cavitation resistance. The need of high vacuum conditions by thermal spraying processes, to avoid oxidation, has always been and still is the main obstacle for the widespread of NiTi as a coating material. This work deals with studying the effect of the different shroud concepts on the obtained oxide content and the phases of the obtained twin wire arc sprayed (TWAS) coatings. The concepts include the use of argon as a shield in gas shroud (GS) as well as the use of an extended air cap attachment as a massive shroud (MS). The use of MS-concept led to a significant decrease in oxide content and therefore was selected to spray pre-alloyed NiTi-SMA wires. The standoff distance between the MS-outlet and the substrate surface shows also an effect on the obtained phases and thus on the behavior of the obtained coatings. At lower standoff distance a pseudo-elastic behavior was obtained and therefore a higher cavitation and wear resistance. The use of argon as atomization and shield gas with a massive shroud could be a cost-effective alternative for vacuum process in case of spraying NiTi-SMA pre-alloyed feedstock materials.
机译:NITI形记忆合金(SMA)的超弹性行为是关于空化阻力的承诺。通过热喷涂过程的高真空条件的需要,以避免氧化,始终是并且仍然是融合作为涂层材料的主要障碍。这项工作涉及研究不同护罩概念对所得氧化物含量的影响和所获得的双线电弧喷涂(TWA)涂层的阶段。该概念包括使用氩气作为气体护罩(GS)的屏蔽以及使用延伸的空气帽附接作为大规模的护罩(MS)。使用MS-Concept导致氧化物含量的显着降低,因此选择喷涂预合金的Niti-Sma线。 MS-Outlet和衬底表面之间的支座距离也显示对所得相的影响,从而显示出所得涂层的行为。在较低的支座距离处获得伪弹性行为,因此获得较高的空化和耐磨性。使用氩气作为雾化和屏蔽气体具有巨大的护罩,在喷洒Niti-SMA预合金原料原料的情况下,真空过程可以是一种经济效率的替代方案。

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