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首页> 外文期刊>Journal of Thermal Spray Technology >Adhesion of Ceramic Coating on Thin and Smooth Metal Substrate: A Novel Approach with a Nanostructured Ceramic Interlayer
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Adhesion of Ceramic Coating on Thin and Smooth Metal Substrate: A Novel Approach with a Nanostructured Ceramic Interlayer

机译:薄而光滑的金属基底上陶瓷涂层的附着力:一种具有纳米结构陶瓷中间层的新方法

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The adhesion of plasma-sprayed coating is, to a large extent, controlled by the cleanness and roughness of the surface on which the coating is deposited. So, most of the plasma spray procedures involve surface pretreatment by grit-blasting to adapt the roughness of the surface to the size of the impacting particles. This preparation process brings about compressive stresses that make it inappropriate for thin substrates. The present works aim to elaborate a thick ceramic coating (about 0.5 mm thick) on a thin metal substrate (1 mm thick) with a smooth surface (Ra of about 0.4 μm). The coating system is intended for use in a Generation-IV nuclear energy system. It must exhibit a good adhesion between the ceramic topcoat and the smooth metal substrate to meet the specifications of the application. Our approach consisted of depositing the ceramic topcoat by air plasma spraying on a few micrometers thick ceramic layer made by suspension plasma spraying. This nanostructured layer played the role of a bond coat for the topcoat and made it possible to deposit it on the as-received substrate. The adhesion of the nanostructured layer was measured by the Vickers indentation cracking technique and that of the ceramic duplex coating system by tensile test.
机译:等离子体喷涂涂层的附着力在很大程度上受到沉积涂层表面的清洁度和粗糙度的控制。因此,大多数等离子喷涂程序都涉及通过喷砂处理对表面进行预处理,以使表面的粗糙度适应撞击粒子的大小。该制备过程产生压应力,使其不适用于薄基板。本工作旨在在具有光滑表面(Ra约为0.4μm)的薄金属基板(1 mm厚)上制作厚陶瓷涂层(约0.5 mm厚)。该涂层系统旨在用于第四代核能系统。它必须在陶瓷面漆和光滑的金属基材之间显示出良好的粘合性,以满足应用规范。我们的方法包括通过空气等离子喷涂在通过悬浮等离子喷涂制成的几微米厚的陶瓷层上沉积陶瓷面漆。该纳米结构层起到了用于面漆的粘结涂层的作用,并使其可以沉积在原样的基材上。纳米结构层的粘附力通过维氏压痕破裂技术进行测量,而陶瓷双涂层系统的粘附力通过拉伸试验进行测量。

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