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Effect of Grit-Blasting on Substrate Roughness and Coating Adhesion

机译:喷砂处理对基材粗糙度和涂层附着力的影响

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Statistically designed experiments were performed to compare the surface roughness produced by grit blasting A36/1020 steel using different abrasives. Grit blast media, blast pressure, and working distance were varied using a Box-type statistical design of experiment (SDE) approach. The surface textures produced by four metal grits (HG16, HG18, HG25, and HG40) and three conventional grits (copper slag, coal slag, and chilled iron) were compared. Substrate roughness was measured using surface profilometry and correlated with operating parameters. The HG16 grit produced the highest surface roughness of all the grits tested. Aluminum and zinc-aluminum coatings were deposited on the grit-blasted substrates using the twin-wire electric arc (TWEA) process. Bond strength of the coatings was measured with a portable adhesion tester in accordance with ASTM standard D 4541. The coatings on substrates roughened with steel grit exhibit superior bond strength to those prepared with conventional grit. For aluminum coatings sprayed onto surfaces prepared with the HG16 grit, the bond strength was most influenced by current, spray distance, and spray gun pressure (in that order). The highest bond strength for the zinc-aluminum coatings was attained on surfaces prepared using the metal grits.
机译:进行统计设计的实验,以比较使用不同的磨料对A36 / 1020钢进行喷砂处理后产生的表面粗糙度。使用Box型实验统计设计(SDE)方法改变喷砂介质,喷砂压力和工作距离。比较了四种金属粗粉(HG16,HG18,HG25和HG40)和三种常规粗粉(铜渣,煤渣和冷铁)产生的表面纹理。使用表面轮廓仪测量基材粗糙度,并将其与操作参数相关联。 HG16粗砂在所有测试的粗砂中产生最高的表面粗糙度。使用双丝电弧(TWEA)工艺将铝和锌铝涂层沉积在喷砂的基材上。涂层的粘合强度是根据ASTM标准D 4541用便携式粘合力测试仪测量的。用钢砂粗化的基材上的涂层表现出比常规砂砾更高的粘合强度。对于喷涂到用HG16砂砾制备的表面上的铝涂层,粘结强度受电流,喷涂距离和喷枪压力(按此顺序)的影响最大。在使用金属粗砂制备的表面上,锌铝涂层的结合强度最高。

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