喷涂技术综述

Harish K. R., Edwin Sahayaraj M., Stanly Jones Retnam B.
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摘要

大量的电镀工艺,通过不同的电镀物质可以应用,自然的目的是保存组件,形状和外层,使其不受任何物理,化学和机械逆境的保护。因此,喷雾热解效率高,成本低,设备简单。喷雾热解是一种重要的技术,它通过在加热表面喷涂前驱体溶液在介质基体上沉积薄膜。喷雾热解已被应用于沉积各种各样的薄膜。这些薄膜广泛应用于太阳能电池、碳太阳能电池、传感器、固体氧化物燃料电池等器件中。我们观察到,沉积薄膜的性能往往取决于制备条件。广泛研究了喷涂参数对膜质量的影响,以证明优化过程的重要性。然而,由于薄膜质量差,热分解和蒸汽对流,喷雾热解似乎没有用。蒸汽是由于温差产生的,这限制了源与衬底的结合。本文简要地研究了喷雾热解技术及其在聚合物金属涂层上的应用。同时,本研究强调了许多研究障碍,并提出了利用现有方法的不足开发新方法的未来研究方向。
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Review on Spray Coating Techniques
A vast array of plating processes, the substances through which different plating can be applied with the natural intention of saving the component, shape and the outer layer that are left unprotected to any kind of physical, chemical and also mechanical adversities. Thus, Spray pyrolysis is very efficient, cost effective, and utilizes simple equipment. Spray pyrolysis is an important technique in which a thin film is deposited on the dielectric matrix by spraying a precursor solution on a heated surface. Spray pyrolysis has been applied to deposit a wide variety of thin films. These films were used in various devices such as solar cells, carbon solar cells, sensors, and solid oxide fuel cells, etc. It is observed that often the properties of deposited thin films depend on the preparation conditions. An extensive investigation of the effects of spray parameters on film quality is given to demonstrate the importance of the process of optimization. However, spray pyrolysis seems not useful due to poor quality of thin film, thermal decomposition, and vapor convection. The vapors are generated due to temperature difference, which restricts the source from binding with the substrate. In this paper, briefly study the spray pyrolysis techniques and using the same for metal coating done over polymers. Also, this study highlighted many research obstacles and presented future direction for research in developing new methodology using the inadequacies of the existing approaches.
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