会议论文详细信息
National Conference on Processing and Characterization of Materials
Modeling of microstructure evolution in direct metal laser sintering: A phase field approach
Nandy, Jyotirmoy^1 ; Sarangi, Hrushikesh^1 ; Sahoo, Seshadev^1
Department of Mechanical Engineering, Institute of Technical Education and Research, Siksha 'o' Anusandhan University, Odisha, Bhubaneswar
751030, India^1
关键词: Direct metal laser sintering;    Effects of temperature;    Manufacturing conditions;    Micro-structure evolutions;    Phase-field approaches;    Physical and mechanical properties;    Process parameters optimizations;    Simulation parameters;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/178/1/012028/pdf
DOI  :  10.1088/1757-899X/178/1/012028
来源: IOP
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【 摘 要 】
Direct Metal Laser Sintering (DMLS) is a new technology in the field of additive manufacturing, which builds metal parts in a layer by layer fashion directly from the powder bed. The process occurs within a very short time period with rapid solidification rate. Slight variations in the process parameters may cause enormous change in the final build parts. The physical and mechanical properties of the final build parts are dependent on the solidification rate which directly affects the microstructure of the material. Thus, the evolving of microstructure plays a vital role in the process parameters optimization. Nowadays, the increase in computational power allows for direct simulations of microstructures during materials processing for specific manufacturing conditions. In this study, modeling of microstructure evolution of Al-Si-10Mg powder in DMLS process was carried out by using a phase field approach. A MATLAB code was developed to solve the set of phase field equations, where simulation parameters include temperature gradient, laser scan speed and laser power. The effects of temperature gradient on microstructure evolution were studied and found that with increase in temperature gradient, the dendritic tip grows at a faster rate.
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