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Deposition of TiO_2 Ceramic Particles on Cold Spray Process

机译:沉积TiO_2陶瓷颗粒对冷喷涂过程

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Cold spraying has been developed as a high-quality coating process. However, the deposition materials were limited as metallic materials. In this paper, titanium dioxide (TiO_2) ceramic particles are deposited on several substrate materials and formed thick coatings, making this approach suitable for a wide range of photocatalytic applications. In order to understand the adhesion mechanism of solid ceramic particles, the structure of feedstock particles are carefully observed with a scanning electron microscope (SEM) and a high-resolution transmission electron microscope (TEM). We find a porous structure which is agglomerated with nano-scaled primary particles. It is assumed that the break down phenomenon occurs due to the cold spray process and influences the adhesion of ceramic particles. The primary particles are bonded within a single crystal. This particular structure is the main factor to make adhesion between the particle and the substrate. SEM and TEM datas clearly reveal adhesion mechanisms related to the impact of spraying ceramic particles toward the substrate.
机译:冷喷涂已被开发为高质量的涂层工艺。然而,沉积材料被限制为金属材料。在本文中,二氧化钛(TiO_2)陶瓷颗粒沉积在几种基底材料上并形成厚涂层,使得这种方法适用于各种光催化应用。为了理解固体陶瓷颗粒的粘附机理,用扫描电子显微镜(SEM)和高分辨率透射电子显微镜(TEM)仔细观察原料颗粒的结构。我们发现一种多孔结构,其用纳米级初级颗粒凝聚。假设由于冷喷雾工艺而发生突破现象,并影响陶瓷颗粒的粘附性。初级颗粒在单晶内键合。这种特殊结构是在颗粒和基材之间粘附的主要因素。 SEM和TEM DATA清楚地揭示了与喷射陶瓷颗粒朝向基底的撞击有关的粘合机制。

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