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Low Porosity and Fine Coatings produced by a New Type Nozzle of High Velocity Arc Spray Gun

机译:由高速弧喷枪的新型喷嘴生产的低孔隙率和细涂层

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Providing for the DZ400 arc spray system, the new design high-velocity arc spray gun with three different nozzles is developed to produce the coatings with the structure of superfine and low porosity. This system can be used to spray the three normal wires of 4Crl3, FeCrAl and 7Crl3 (flux cored wires). With the SEM to analysis shape and particles size sprayed by the nozzles by different parameters, as well as with the S-3500N SEM (made by HITACHI) and the INCA ESA (made by OXFORD) identify the content of the oxides, porosity and thickness of the coatings. The result shows that the porosity in the coatings of solid wire is less than 2 percent, of the flux-cored wires is less than 4 percent, and the coating sprayed by the nozzle with the secondary supplementary airflow is typically shown to be distributed in the form of high-density lamellar splat structure and the average lamellar thickness is around Sum.
机译:为DZ400电弧喷涂系统提供,开发了具有三种不同喷嘴的新设计高速电弧喷枪,以产生具有超细结构和低孔隙率的涂层。该系统可用于喷洒4CRL3,Fecral和7CRL3(磁通芯线)的三根正常线。通过SEM通过不同参数喷出喷嘴的形状和颗粒尺寸,以及S-3500N SEM(由Hitachi制造)和印加欧安部(由牛津制成)鉴定氧化物,孔隙率和厚度的含量涂料。结果表明,固体线的涂层中的孔隙率小于2%,磁通芯线小于4%,并且通常用次级补充气流喷射喷嘴的涂层分布在高密度层层平均结构的形式和平均层状厚度是约束。

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