Plasma Sputtering of a Nanostructured Hafnium-Oxide Coating by Means of a Prandtl–Meyer Flow


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The geometric characteristics of the supersonic nozzle of a plasmatron intended for vacuum plasma sputtering, which creates a Prandtl–Meyer expansion fan, are estimated. The nozzle facilitates nanoparticle condensation from the vapor phase of the sputtered material due its cooling in the vicinity of the nozzle cross section rotated by 6° and 27°. During the process of sputtering, a coating containing mainly large-scale particles and their fragments and a film consisting of nanoparticles are formed if the central part of the nozzle and its peripheral regions pass over the sample, respectively. Investigation into the surface structure of a HfO2–9% Y2O3 coating 30 μm thick indicates the existence of deformed particles and nanostructured regions in the form of thin film fragments.

作者简介

S. Savushkina

Keldysh Research Center; Moscow Aviation Institute (National Research University)

编辑信件的主要联系方式.
Email: sveta_049@mail.ru
俄罗斯联邦, Moscow, 125438; Moscow, 109383

M. Polyansky

Keldysh Research Center

Email: sveta_049@mail.ru
俄罗斯联邦, Moscow, 125438

G. Panasova

Keldysh Research Center; Moscow Aviation Institute (National Research University)

Email: sveta_049@mail.ru
俄罗斯联邦, Moscow, 125438; Moscow, 109383

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