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    • 5. 发明授权
    • Process for forming coatings on metallic bodies and an apparatus for carrying out the process
    • 用于在金属体上形成涂层的方法和用于实施该方法的装置
    • US06893551B2
    • 2005-05-17
    • US10210042
    • 2002-08-02
    • Lingamaneni Rama KrishnaAlexander Vasilyevich RybalkoGovindan Sundararajan
    • Lingamaneni Rama KrishnaAlexander Vasilyevich RybalkoGovindan Sundararajan
    • C25D11/02C25D11/04C25D9/00C25D17/00C25D21/12
    • C25D11/005C25D11/024C25D11/026C25D11/04
    • A process for forming oxide based dense ceramic composite coatings on reactive metal and allow bodies involves suspension of at least two reactive metal or alloy bodies in a non-metallic, non-conducting, non-reactive chamber in such a way that it causes either partial or full immersion of the bodies in a continuously circulating electrolyte. Thyristor controlled, modified shaped wave multiphase alternating current power supply is applied across the bodies where in each body is connected to an electrode. Electric current supplied to the bodies is slowly increased to a particular value till the required current density is achieved and the maintained at the same level throughout the process. Visible arcing at the surface of the immersed regions of the bodies is identified when the applied electric potential crosses 60V. Electric potential is further increased gradually to compensate the increasing resistance of the coating. Electrolyte composition is regulated through the changes in pH and conductivity of the electrolytic solution, Thickness of the coating formed on the bodies is monitored by the time for which the electrical power at constant current density is supplied to the bodies. The contains obtained are found to exhibit higher density and excellent wear.
    • 在反应性金属和允许体上形成氧化物基致密陶瓷复合涂层的方法包括在非金属,非导电,非反应性室中悬浮至少两种反应性金属或合金体,使得其导致部分 或完全浸没在连续循环的电解液中。 晶闸管控制的变形波形多相交流电源被施加在每个主体中连接到电极的主体上。 提供给身体的电流缓慢地增加到特定值,直到达到所需的电流密度并且在整个过程中维持在相同的水平。 当施加的电势跨越60V时,识别身体浸入区域表面的可见电弧。 电势进一步逐渐增加,以补偿涂层的增加的阻力。 通过电解液的pH和电导率的变化来调节电解质组成,通过向体内供给恒定电流密度的电力的时间监测在体上形成的涂层的厚度。 发现获得的含量表现出更高的密度和优异的磨损。