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Technical Aspects of Pulsed CVD Siliconizing of Steel Surfaces

机译:钢表面脉冲CVD硅化的技术方面

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Thick siliconized diffusion zones provide enhanced protection against corrosion. A realisation of pulsed siliconizing via CVD (PSC) of steel surfaces is presented. Totally integrated automation applications are used for the development and for exact control of the process run, for transferability and to ease the integration into industrial processes. This PSC process is combined with advanced heat treatment of the surface. The silicon is from the reduction of SiC14 with hydrogen at high temperature. At high temperature the silicon diffuses into the steel surface while cleaning with hydrogen flow. The reduction of SiC14 precursor takes place at the specific austenizing temperature of the steel during the first high temperature cycle of the typical heat treatment. The pause time between the Si-pulses is needed for dechlorination and other effects. The pulses and pauses are automatically generated with a combination of valves for volume and time control. The siliconized surfaces show increased resistance against oxidation and corrosion. This is used, for example, to protect tubes for boilers in new conventional power plants with increased steam parameters that show waterside oxidation.
机译:厚的硅化扩散区可提供增强的防腐蚀保护。提出了钢表面CVD(PSC)的脉冲硅化的实现。完全集成的自动化应用程序用于开发和精确控制过程运行,以便可转换,并使整合到工业过程中。该PSC工艺与表面的先进热处理相结合。硅是在高温下用氢的SiC14的减少。在高温下,用氢气流放,硅扩散到钢表面中。在典型热处理的第一高温循环期间,SiC14前体的减少在钢的特定奥氏体化温度下进行。脱氯和其他效果需要Si-脉冲之间的暂停时间。用阀门的组合自动产生脉冲和暂停,用于体积和时间控制。硅化表面显示出抗氧化和腐蚀的增加。例如,这用于保护新的传统发电厂中的锅炉管的管,以增加蒸汽参数,显示水边氧化。

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