爆震枪涂层硬度增强技术

K. Balan, B. R. Bapu
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引用次数: 3

摘要

在世界范围内,为了提高不同工业材料的表面耐磨性,进行了大量的研究工作。由于这个原因,表面涂层技术变得流行起来。爆轰枪(d-gun)喷涂是最先进的热喷涂变体之一,用于沉积高质量的耐磨涂层。在所有可以用D-gun喷涂的陶瓷材料中,氧化铝(Al2O3)是最广泛建立的,这些涂层已经在各种应用中获得了工业认可。本文对d枪喷涂Al2O3粉末的实验研究进行了统计设计。采用田口L4设计参数法进行涂层实验,优化d枪喷涂工艺参数。根据测试矩阵,选取三个重要的喷涂参数在预定义范围内的上、下两个级别进行考虑,以显示工艺条件的范围及其对涂层质量的影响。采用图像分析和显微硬度测试进行表征。从表面硬度和显微组织两个方面讨论了涂层质量。涂层的属性与操作参数的变化相关联,并计算其相对重要性和对总方差的贡献率
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The hardness enhancement technique for detonation gun coating
Throughout the globe lot of research works are going on in order to improve the surface wear resistance of the different industrial materials. For that reason the surface coating techniques become popular. The detonation gun (d-gun) spraying is one of the most advanced thermal spray variants for depositing high quality wear resistant coatings. Of all the ceramic materials that can be D-gun sprayed, alumina (Al2O3) is the most widely established and these coatings have already gained industrial acceptance for diverse applications. The present study deals with a statistical design of experimental study of the D-gun spraying of Al2O3 powder. Coating experiments were conducted, using a Taguchi L4 design parametric study, to optimize the D-gun spray process parameters. Three selected important spraying parameters were considered in their upper and lower levels of the predefined range according to the test matrix, in order to display the range of processing conditions and their effect on the coating quality. Image analysis and micro-hardness testing was used for characterization. Coating qualities are discussed with respect to surface hardness and microstructure. The attributes of the coatings are correlated with the changes in operating parameters and their relative importance and contribution ratios to overall variance are calculated
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