会议论文详细信息
7th National Conference on Processing and Characterization of Materials
Numerical simulation of residual stress in laser based additive manufacturing process
Panda, Bibhu Kalyan^1 ; Sahoo, Seshadev^1
Department of Mechanical Engineering, Faculty of Engineering and Technology, Siksha 'O' Anusandhan, Odisha Bhubaneswar, India^1
关键词: Additive manufacturing process;    Direct metal laser sintering;    High cooling rates;    Laser-based additive manufacturing;    Processing parameters;    Structural modeling;    Thermomechanical model;    Transient temperature distributions;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/338/1/012030/pdf
DOI  :  10.1088/1757-899X/338/1/012030
来源: IOP
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【 摘 要 】

Minimizing the residual stress build-up in metal-based additive manufacturing plays a pivotal role in selecting a particular material and technique for making an industrial part. In beam-based additive manufacturing, although a great deal of effort has been made to minimize the residual stresses, it is still elusive how to do so by simply optimizing the processing parameters, such as beam size, beam power, and scan speed. Amid different types of additive manufacturing processes, Direct Metal Laser Sintering (DMLS) process uses a high-power laser to melt and sinter layers of metal powder. The rapid solidification and heat transfer on powder bed endows a high cooling rate which leads to the build-up of residual stresses, that will affect the mechanical properties of the build parts. In the present work, the authors develop a numerical thermo-mechanical model for the measurement of residual stress in the AlSi10Mg build samples by using finite element method. Transient temperature distribution in the powder bed was assessed using the coupled thermal to structural model. Subsequently, the residual stresses were estimated with varying laser power. From the simulation result, it found that the melt pool dimensions increase with increasing the laser power and the magnitude of residual stresses in the built part increases.

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