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Honeycomb catalyst coating with alumina slurries: The vacuum method.

机译:氧化铝浆料蜂窝催化剂涂层:真空法。

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During the flow of fluid on a porous surface particulate materials in the fluid are deposited on the surface. This deposition phenomenon governs the application of several different types of coatings including paint coatings on houses. Ceramic honeycomb catalytic converters for automobiles and industry are sometimes made by catalyst coating processes that utilize such deposition. The inactive ceramic honeycombs are coated by drawing a catalyst liquid through the honeycomb. During the flow the liquid leaves a film of catalyst on the walls. One of the coating methods, the vacuum method, was the focus of this study.; Typically the coat forms a circular cross-section within the square honeycomb channels. Surface active materials were used to minimize the formation of circular cross-section coatings. A second problem is that during the coating process several of the honeycomb channels get clogged by the catalyst liquid, lowering catalytic converter quality. In this study, the flow of catalyst liquid in honeycomb channels was simulated by liquid flowing in both non-porous glass and porous cordierite ceramic tubes. The flow of was investigated visually using a video-camera set-up. Observations of the effects of liquid physical properties and the flow conditions were made. Wave instabilities formed in the catalyst film were found to be the source of the clogging.
机译:在多孔表面上的流体流动期间,流体中的微粒材料沉积在表面上。这种沉积现象控制着几种不同类型的涂料的应用,包括房屋上的油漆涂料。用于汽车和工业的陶瓷蜂窝状催化转化器有时通过利用这种沉积的催化剂涂覆工艺来制造。通过将催化剂液体抽吸通过蜂窝来涂覆惰性陶瓷蜂窝。在流动期间,液体在壁上留下催化剂膜。该研究的重点是真空涂覆法之一。通常,涂层在方形蜂窝状通道内形成圆形横截面。使用表面活性材料可最大程度地减少圆形截面涂层的形成。第二个问题是,在涂覆过程中,多个蜂窝通道被催化剂液体堵塞,从而降低了催化转化器的质量。在这项研究中,通过液体在无孔玻璃和多孔堇青石陶瓷管中的流动来模拟催化剂在蜂窝通道中的流动。使用摄像机的摄像头对流量进行了视觉调查。观察了液体物理性质和流动条件的影响。发现在催化剂膜中形成的波不稳定性是堵塞的根源。

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