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Simulation of Thermophysical Processes at Laser Welding of Alloys Containing Refractory Nanoparticles

Simulation of Thermophysical Processes at Laser Welding of Alloys Containing Refractory Nanoparticles
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摘要 Mathematical model is formulated for description of thermophysical processes at laser welding of metal plates for the case when modifying nanoparticles of refractory compounds (nanopowder inoculators – NPI) are introduced into the weld pool. Specially prepared nanoparticles of refractory compounds serve here as crystallization centers, i.e. in fact they are exogenous inoculants on which surface clusters are grouped. This can be used to control the melt crystallization process and formation of its structure, and, therefore, properties of the weld seam. As an example, calculation results of the butt welding of aluminum alloy and steel plates are presented. The results of calculation and experimental data comparison are shown. Mathematical model is formulated for description of thermophysical processes at laser welding of metal plates for the case when modifying nanoparticles of refractory compounds (nanopowder inoculators – NPI) are introduced into the weld pool. Specially prepared nanoparticles of refractory compounds serve here as crystallization centers, i.e. in fact they are exogenous inoculants on which surface clusters are grouped. This can be used to control the melt crystallization process and formation of its structure, and, therefore, properties of the weld seam. As an example, calculation results of the butt welding of aluminum alloy and steel plates are presented. The results of calculation and experimental data comparison are shown.
出处 《Advances in Materials Physics and Chemistry》 2012年第4期270-273,共4页 材料物理与化学进展(英文)
关键词 Mathematical Model Laser Welding NANOPOWDER Inoculators CRYSTALLIZATION Process Calculation Results Mathematical Model Laser Welding Nanopowder Inoculators Crystallization Process Calculation Results
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