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Surface conditions of substrate and adhesive property of sprayed coating

机译:喷涂涂层基材的表面条件及粘合性能

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摘要

Though the adhesion between substrate and sprayed coating seems tobemainly due to the anchoring effect, quantitative examinations have not been sufficient. In this paper, the surface condition of a roughened substrate is quantitatively evaluated using a surface roughness tester, and the adhesive relationship is clarified. Substrate used was S45C carbon steel, and the roughening methods were blasting and endless belt polishing with alumina grit, in various roughening conditions. A pure copper coating was formed using the powder flame spraying method on roughened substrate. The drawing adhesion strength test method was used to evaluate the adhesive properties. The adhesive strength is reduced, though the surface roughness of the substrate increases, as the size of the grid particles for roughening increase. The alumina grits remained on the substrate after roughening, and they were removed by ultrasonic cleaning. Though there is no relation between the adhesive strength and the ratio of the increase in the surface area of substrate due to the roughening treatment, it is recognized that the adhesive strength also increases when the roughness gradient of the substrate increases.
机译:虽然基材和喷涂涂层之间的粘附性似乎由于锚固效果而似乎,但定量检查尚未充足。本文使用表面粗糙度测试仪定量评估粗糙基板的表面状况,阐明了粘合关系。使用的衬底是S45C碳钢,并且粗糙化方法用氧化铝砂粒抛出和环形带抛光,在各种粗糙化条件下。使用粗糙的基材上的粉末火焰喷涂方法形成纯铜涂层。拉伸粘合强度试验方法用于评价粘合性能。粘合强度减小,尽管基板的表面粗糙度增加,作为粗糙化粗糙的栅格颗粒的尺寸。在粗糙化后,氧化铝粗磨在基材上,并且通过超声波清洗除去它们。虽然粘合强度与由于粗糙化处理引起的基板的表面积增加的比率之间没有关系,但是认识到当基板的粗糙度梯度增加时,粘合强度也会增加。

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