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Solidification behaviour during laser microcladding of Al-Si alloys

机译:铝硅合金激光微熔覆过程中的凝固行为

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The aim of the present work is to investigate features of low-density materials' structure formation during laser microcladding. Clad tracks with the submillimeter width were successfully produced by laser microcladding of the low-density Al-Si hypereutectic alloys. Microstructures produced with various process parameters and with various chemical compositions of the cladding material were investigated. Structure formation mechanism of Al-Si alloys during laser microdadding was discussed. The influence of laser microcladding on the solidification process and on the final solidification microstructure was studied. The influence of structure formation mechanism on the mechanical properties of the solidified material was investigated. The clad walls less than 300 mu m wide with aspect ratio of the long and short sides about 7.5 were manufactured. Structure changes that occurred during the placement of many layers on top of each other were discussed. Mechanical properties and surface roughness of the clad walls as well were investigated. Possibility of using the laser microcladding technique to produce a volume in the submillimeter range was demonstrated. (C) 2014 Elsevier B.V. All rights reserved.
机译:本工作的目的是研究激光微熔覆过程中低密度材料结构形成的特征。通过对低密度Al-Si过共晶合金进行激光微熔覆,成功生产出亚毫米宽的熔覆轨道。研究了具有各种工艺参数和包层材料的各种化学组成的微结构。讨论了激光微熔过程中Al-Si合金的结构形成机理。研究了激光微熔覆层对凝固过程和最终凝固组织的影响。研究了结构形成机理对凝固材料力学性能的影响。制造了宽度小于300μm,长边和短边的长宽比约为7.5的包层壁。讨论了在将许多层相互叠加的过程中发生的结构更改。还研究了复合壁的机械性能和表面粗糙度。证明了使用激光微熔覆技术产生亚毫米范围内体积的可能性。 (C)2014 Elsevier B.V.保留所有权利。

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