Obtaining Multicomponent Coatings of a Stable Composition for Electromagnetic Radiation Screens

V. Zelenin, E. O. Narushko, A. D. Gladinov
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引用次数: 1

Abstract

The formation processes of coatings of Cu–Ni and Ag–Cu systems with a stable elemental composition by the method of electron-beam evaporation are considered. It is shown that in the zone of action of the electron beam on the ingot placed in the crucible at the total vapor pressure of the alloy elements Σp above the pressure under the cap of the installation, the melt boils, and in the outer zone adjacent to the melt zone, the process of sublimation of the hard alloy occurs. The microrelief and elemental composition of the surface layer of the Cu–Ni alloy ingot in the zones of evaporation and sublimation, as well as the elemental composition of the coatings deposited in this case, have been studied. It is shown that the most acceptable way to obtain coatings of the Cu–Ni system with a stable elemental composition is the simultaneous electron-beam evaporation of copper and nickel from two crucibles. The azeotropic composition of the alloy of the Ag–Cu system was calculated and experimentally verified. The research results are used in the manufacture of multilayered screens of electromagnetic radiation.
制备一种稳定的电磁辐射屏蔽用多组分涂层
研究了采用电子束蒸发法制备元素组成稳定的Cu-Ni和Ag-Cu体系镀层的过程。结果表明,在合金元素的总蒸气压Σp高于装置帽下压力的情况下,电子束对坩埚内钢锭的作用区内,熔体沸腾,在熔体附近的外区,硬质合金发生升华过程。研究了Cu-Ni合金锭在蒸发和升华区表层的微形貌和元素组成,以及在这种情况下沉积的镀层的元素组成。结果表明,在两个坩埚中同时用电子束蒸发铜和镍是获得元素组成稳定的Cu-Ni体系镀层的最可行方法。计算了Ag-Cu体系合金的共沸成分,并进行了实验验证。研究成果已应用于多层电磁辐射屏的制造。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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8 weeks
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