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首页> 外文期刊>Materials transactions >Influence of Substrate Temperature on Structure and Adhesion Strength of Fe-Cr-P-C Amorphous Coating Films Produced by Thermal Spraying Technique
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Influence of Substrate Temperature on Structure and Adhesion Strength of Fe-Cr-P-C Amorphous Coating Films Produced by Thermal Spraying Technique

机译:基材温度对热喷涂技术制备的Fe-Cr-P-C非晶涂层膜结构和粘合强度的影响

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摘要

The influence of the substrate temperature on the structure, the pore distribution, and the adhesion strength of Fe-lOCr-based amorphous coating films has been examined. The amorphous coating films have been produced by a thermal spraying technique using our developed cylindrical nozzle on SS400 substrates. The splat morphology of the sprayed particles changed drastically from an irregular splash shape to a disk shape at a transition temperature of about 325°C. When the substrate temperature increased to the transition temperature region, between 325 and 350°C, the porosity in the boundary regions between the sprayed coating films and the substrates drastically decreased to about 6%, which may be due to the drastic increase in the wettability of the sprayed particles accompanied with the change of morphology from the splashed shape to the disk shape. When the substrate temperature increased from the transition temperature of 325°C up to 400°C, the porosity decreased gradually, and the volume fraction of the amorphous phase increased with increasing substrate temperature, resulting in an increase in the adhesion strength up to about 15MPa.
机译:已经研究了基材温度对Fe-1OCr基非晶涂层膜的结构,孔分布和粘合强度的影响。使用我们开发的圆柱形喷嘴在SS400基板上通过热喷涂技术生产出非晶涂层膜。在约325℃的转变温度下,喷雾颗粒的飞溅形态急剧地从不规则的飞溅形状变为盘状。当基材温度升高到325至350°C之间的转变温度区域时,喷涂涂膜与基材之间的边界区域的孔隙率急剧下降至大约6%,这可能是由于润湿性的急剧增加所致喷涂颗粒的形态伴随着形态的变化,从飞溅的形状变为圆盘状。当基材温度从325°C的转变温度升高到400°C时,孔隙率逐渐降低,非晶相的体积分数随基材温度的升高而增加,从而导致粘合强度提高至约15MPa。 。

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