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    • 3. 发明授权
    • Electrostatic deaeration method and apparatus
    • 静电除气方法及装置
    • US06726743B2
    • 2004-04-27
    • US10175335
    • 2002-06-18
    • John W. LouksSteven H. GotzLuther E. Erickson
    • John W. LouksSteven H. GotzLuther E. Erickson
    • B03C3016
    • B01D19/0078B01D19/0021B01D19/0052B01D19/0084
    • This disclosure relates to a method for deaerating a liquid layer such as a coating solution using electrostatic forces. A flow of charged particles is created above and moved towards a low conductivity liquid layer. The flow of charged particles causes localized thinning of the liquid layer which facilitates the removal of bubbles of entrained gas from the liquid by bringing those bubbles closer to the exposed surface of the liquid and rupturing them at that surface. This electrostatic deaeration technique is combined with other non-electrostatic liquid layer thinning techniques or degassing techniques to further facilitate removal of bubbles from the liquid in preparation of further processing of the liquid. The liquid layer may be stationary or flowing with respect to the application of charge particles.
    • 本公开涉及使用静电力使诸如涂布溶液之类的液体层脱气的方法。 在上方产生带电粒子的流动并向低导电性液体层移动。 带电粒子的流动导致液体层的局部变薄,这有助于通过使这些气泡更接近液体的暴露表面并使其在该表面破裂而有助于从液体中去除夹带气体的气泡。 这种静电除气技术与其它非静电液体层减薄技术或脱气技术相结合,以进一步促进从液体中除去气泡,从而准备进一步处理液体。 相对于施加电荷颗粒,液体层可以是静止的或流动的。