Thermal Analysis for Simulation of Metal Additive Manufacturing Process Considering Temperature- and History-Dependent Material Properties
暂无分享,去创建一个
Kichul Kim | Jin Yeon Cho | Jae Won Kang | Jeong Ho Kim | Seon Ho Jeong | Eun Gyo Park | J. Cho | J. Kim | Kichul Kim | E. Park | J. Kang | S. Jeong
[1] Hee-Seon Bang,et al. Analysis of Thermal and Welding Residual Stress for Hybrid Welded Joint by Finite Element Method , 2007 .
[2] Olaf Diegel,et al. Wohlers Report 2018: 3D printing and additive manufacturing state of the industry: Annual Worldwide Progress Report , 2017 .
[3] A. Foroozmehr,et al. Finite Element Simulation of Selective Laser Melting process considering Optical Penetration Depth of laser in powder bed , 2016 .
[4] D. Mynors,et al. A three-dimensional finite element analysis of the temperature field during laser melting of metal powders in additive layer manufacturing , 2009 .
[5] Usman Ali,et al. 3-Dimensional heat transfer modeling for laser powder-bed fusion additive manufacturing with volumetric heat sources based on varied thermal conductivity and absorptivity , 2019, Optics & Laser Technology.
[6] Jinhui Liu,et al. Select laser melting of W–Ni–Fe powders: simulation and experimental study , 2010 .
[7] J. Goldak,et al. A new finite element model for welding heat sources , 1984 .
[8] Joo-Sung Lee. Welding Deformation Analysis of Plates Using the Inherent Strain-based Equivalent Load Method , 2010 .
[9] Mostafa Yakout,et al. The selection of process parameters in additive manufacturing for aerospace alloys , 2017 .
[10] StandardizationforTemperatureDistributionPredictio Fea,et al. Standardization for Temperature Distribution Prediction of the Arc Weld using FEA , 2006 .
[11] D. Gu,et al. Thermal behavior and densification mechanism during selective laser melting of copper matrix composites: Simulation and experiments , 2014 .
[12] D. Gu,et al. Parametric analysis of thermal behavior during selective laser melting additive manufacturing of aluminum alloy powder , 2014 .