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Diffusion of critical elements in steel during thermal treatments in a diamond chemical vapour deposition atmosphere

机译:在金刚石化学气相沉积气氛中的热处理中钢中临界元素的扩散

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In this study, it will be investigated the diffusion of critical elements, namely, carbon (C) and iron (Fe), into a steel substrate (Impax Supreme) during the diamond chemical vapour deposition (CVD) process. The substrate temperature was varied from 700 to 850°C by plasma power manipulations to enable the correlation of substrate temperature with diffusion length and depth of the above mentioned critical elements into steel during film growth conditions. Methane concentration is also a parameter which has been considered during the parametric analysis. The crystalline compounds formed during the diamond growth process are studied using XRD analysis. In addition, SIMS technique is used with depth profiling to monitor the diffusion of elements during the process. The results obtained enabled to improve traditional understanding about the mechanisms relating to diamond deposition on steel substrates using CVD processes.
机译:在该研究中,将在金刚石化学气相沉积(CVD)过程中,将临界元素,即碳(C)和铁(Fe)的扩散,即碳(C)和铁(Fe)扩散到钢基材(Impax至高无上)中。基板温度通过等离子体动力操作在700至850℃变化,以使基板温度与上述临界元素的扩散长度和深度的相关性能够在薄膜生长条件下钢。甲烷浓度也是在参数分析期间已经考虑的参数。使用XRD分析研究了金刚石生长过程中形成的结晶化合物。此外,SIMS技术与深度分析一起使用,以监测该过程中元件的扩散。获得的结果使改善了使用CVD工艺对钢基材上的金刚石沉积有关的机制的传统理解。

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