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Intrinsic stresses in multi-component nitride coatings produced by plasma immersion ion implantation

机译:等离子体浸没离子注入产生的多组分氮化物涂层的固有应力

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摘要

In model of nonlocal thermoelastic peak of low energy ion the process of intrinsic stress formation in the multi-component coatings CrN, Cr₀.₅Al₀.₅ N, TiN, Ti₀.₅Al₀.₅N, deposited by vacuum arc method from ion beams Cr⁺, Cr⁺₀.₅Al⁺₀.₅, Ti⁺, Ti⁺₀.₅Al⁺₀.₅ in direct current (DC) and pulsed potential modes is investigated. The calculations of the intrinsic stress σ in the coatings depending on bias potential U at different deposition regimes and temperatures are carried out. It has been shown that growth of Al ion content in the mixed beam of incident ions increases stress σ(U) in the deposited coating whereas growth of deposition temperature decreases it. Transition from the DC mode of deposition to the pulsed potential one leads to reduction of intrinsic stress maximum and shifts it in area of higher potentials. Comparison of theoretical results with experimental data permits estimating value of activation energy of defect migration.
机译:在低能离子的非局部热弹性峰模型中,多组分涂层CrN,Cr⁺.₅Al₀.₅N,TiN,Ti₀.₅Al₀.₅N的固有应力形成过程是通过真空电弧法从离子束Cr⁺,研究了直流(DC)模式和脉冲电势模式下的Cr⁺₀AlAl⁺₀Ti,Ti⁺AlAl₅。在不同的沉积方式和温度下,根据偏置电位U进行涂层中的固有应力σ的计算。业已表明,入射离子混合束中Al离子含量的增加会增加沉积涂层的应力σ(U),而沉积温度的增长会降低该应力。从直流沉积模式到脉冲电势的转变会导致固有应力最大值的减小,并将其转移到较高电势的区域。理论结果与实验数据的比较允许估计缺陷迁移的活化能值。

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