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CHEMICAL GAS DISTRIBUTION AND PUBLICATION BY A THERMICAL SPRITING METHOD FROM SUPERKITICAL AND SUPERCRITICAL SOLUTIONS

机译:基于超动力学和超临界溶液的热分解方法的化学气体分布和出版

摘要

A method for chemical vapor deposition using a very fine atomization or vaporization of a reagent containing liquid or liquid-like fluid near its supercritical temperature, where the resulting atomized or vaporized solution is entered into a flame or a plasma torch, and a powder is formed or a coating is deposited onto a substrate. The combustion flame can be stable from 10 torr to multiple atmospheres, and provides the energetic environment in which the reagent contained within the fluid can be reacted to form the desired powder or coating material on a substrate. The plasma torch likewise produces the required energy environment, but, unlike the flame, no oxidizer is needed so materials stable in only very low oxygen partial pressures can be formed. Using either the plasma torch or the combustion plasma, coatings can be deposited and powders formed in the open atmosphere without the necessity of a reaction chamber, but a chamber may be used for various reasons including process separation from the environment and pressure regulation.
机译:一种用于化学气相沉积的方法,该方法使用非常接近于其超临界温度的包含液体或类液体的试剂的极细雾化或汽化的方法,其中将所得雾化或汽化的溶液放入火焰或等离子炬中,并形成粉末或者将涂层沉积到基材上。燃烧火焰可在10托至大气压下保持稳定,并提供高能环境,在该环境中,流体中所含的试剂可发生反应,从而在基材上形成所需的粉末或涂料。等离子炬同样产生所需的能量环境,但与火焰不同,它不需要氧化剂,因此可以形成仅在非常低的氧分压下稳定的材料。使用等离子炬或燃烧等离子体,可以在露天气氛中沉积涂层并形成粉末,而无需反应室,但是由于各种原因,可以使用反应室,包括与环境的工艺分离和压力调节。

著录项

  • 公开/公告号DE69636627D1

    专利类型

  • 公开/公告日2006-11-23

    原文格式PDF

  • 申请/专利权人 NGIMAT CO.;

    申请/专利号DE19966036627T

  • 发明设计人 HUNT T.;HORNIS G.;

    申请日1996-08-02

  • 分类号B29B9;H05H1/24;B05D1/02;B22F9/28;B32B9;B32B15;B32B18;C01B13/34;C23C16/02;C23C16/06;C23C16/22;C23C16/26;C23C16/30;C23C16/32;C23C16/44;C23C16/448;C23C16/453;

  • 国家 DE

  • 入库时间 2022-08-21 20:27:31

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