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Vacuum heat treatment mechanisms promoting the adhesion strength of thermally sprayed metallic coatings

机译:真空热处理机制促进热喷涂金属涂层的粘合强度

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In this study, the mechanisms responsible for enhancing the adhesion strength of thermally sprayed metallic coatings subjected to vacuum heat treatment were investigated using atmospheric plasma sprayed (APS) CoNiCrAlY coatings as an example. The formation of metallurgical bonding between the coating and the substrate, which determined the increase in the adhesion strength of the coatings, was studied by analyzing the effect of morphological changes of the oxide film in the coating. The results showed that during the vacuum heat treatment process, the oxide film formed during the coating deposition gradually broke down and subsequently shrank into round-shaped oxide inclusions. After vacuum heat treatment, the adhesion strength of the coating improved significantly. The increase in the adhesion strength was caused by the formation of metallurgical bonding between the coating and the substrate. However, the prerequisite for the formation of metallurgical bonding was that the oxide film had to break during the vacuum heat treatment process. A thermodynamic 2D model based on the thermal grooving theory was proposed to explore the essential conditions for the breaking and shrinking of the oxide film. The results predicted by the 2D model and the experimental results were in good agreement with each other and indicated that at a given temperature, the breaking of the oxide film is directly related to its thickness.
机译:在该研究中,使用大气等离子体喷涂(APS)对比涂层来研究负责提高对真空热处理进行真空处理进行真空处理的热喷涂金属涂层的粘合强度的机制。通过分析涂层中氧化膜的形态变化的效果,研究了涂层和基板之间的冶金键合的冶金键合的形成,该涂层和基材之间的粘合强度的增加。结果表明,在真空热处理过程中,在涂层沉积期间形成的氧化膜逐渐突破并随后缩合成圆形氧化物夹杂物。真空热处理后,涂料的粘合强度显着提高。粘合强度的增加是由涂层和基材之间的冶金键合引起的。然而,形成冶金键合的先决条件是氧化膜在真空热处理过程中必须破裂。提出了一种基于热槽理论的热力学2D模型,探讨氧化膜断裂和收缩的基本条件。由2D模型预测的结果和实验结果彼此吻合良好,并表明在给定温度下,氧化膜的破碎与其厚度直接相关。

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