Effect of Laser Processing Patterns on the Bonding Interface Quality during Laser Sintering of Magnesium Alloys with Zirconia

Yoon Sangwoo, Kim, JooHan
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Abstract

The quality of the ceramic sintered coating on a metal surface through laser surface treatment is affected by the laser irradiation pattern. Depending on the laser irradiation pattern, the amount of residual stress and heat applied or accumulated on the surface increases or decreases, affecting the thickness attained in the ceramic sintering area. When the heat energy accumulated in the sintering area is high, the ceramic and the metal alloy melt and sufficiently mix to form a homogeneous and thick bonding interface. In this study, the thermal energy accumulation in the region sintered with zirconia was controlled using four types of laser processing patterns. The thickness of the diffusion region is analyzed by laser-induced breakdown spectroscopy of Mg ZrO – 2 generated by laser sintering zirconia powder on the magnesium alloy surface. On the basis of the analysis of the Mg and Zr present in the sintered region through LIBS, the effect of the irradiation pattern on the sintering quality is confirmed by comparing and analyzing the heat and mass transfer tendency of the diffusion layer and the degree of diffusion according to the irradiation pattern. The derived diffusion coefficients differed by up to 9.8 times for each laser scanning pattern.
激光加工方式对氧化锆镁合金激光烧结界面质量的影响
激光表面处理后的陶瓷烧结涂层的质量受激光辐照方式的影响。根据激光辐照模式的不同,施加或积累在表面上的残余应力和热量会增加或减少,从而影响陶瓷烧结区域的厚度。当烧结区积累的热能较高时,陶瓷和金属合金熔化并充分混合,形成均匀厚的结合界面。在本研究中,采用四种激光加工模式控制氧化锆烧结区的热能积累。采用激光诱导击穿光谱法对激光烧结氧化锆粉末在镁合金表面生成的Mg ZrO - 2扩散区厚度进行了分析。通过LIBS对烧结区存在的Mg和Zr进行分析,通过对比分析扩散层的传热传质倾向和根据辐照模式进行的扩散程度,确定辐照模式对烧结质量的影响。在不同的激光扫描模式下,导出的扩散系数相差高达9.8倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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