AbstractA self-consistent three-dimensional mathematical model was developed to predict the crystal growth and microstructure formation in multi-layer and multi-tracklaser powder deposition of single-crystal superalloy. Laser powder deposition experiments with nickel-based single-crystal superalloy were conducted to verify the computational results. The results indicated that the overlapping ratio was the key parameter to ensurethe continuity and consistency of the epitaxial columnar dendrite growth. Both small and large overlapping ratios lead to residual stray grain region of the previously deposited layer. Scanning with alternating X and Y direction method produces better result with the continuous columnar dendrite growth compared to th...
In the manufacture of parts by direct metal deposition it is common to inject powder into a molten p...
This study presents two analytical models for the laser powder bed fusion (LPBF) process. To begin, ...
This paper focuses on computational modeling of Scanning Laser Epitaxy (SLE), an additive manufactu...
AbstractA self-consistent three-dimensional mathematical model was developed to predict the crystal ...
This paper focuses on microstructure evolution in single-crystal alloys processed through scanning ...
AbstractThis paper presents a numerical model which simulates the dynamic molten pool formation and ...
Single layer deposits consisting of Mar-M 247 powder were consolidated on Alloy 718 polycrystalline...
The continued drive for increased efficiency, performance and reduced costs for aircraft and industr...
This paper presents recent progress on scanning laser epitaxy, a laser manufacturing technique bein...
Scanning Laser Epitaxy (SLE) is a new laser-based layer-by-layer generative manufacturing technology...
This paper reports on the experimental development and the theoretical analysis of the scanning las...
Ni-based superalloy single crystals were grown by different methods (gradient method and Bridgman te...
In this paper laser metal deposition (LMD) with blown powder was reviewed with respect to the materi...
One of the well-known AM techniques is laser powder-bed fusion (LPBF), which enables engineers to be...
In the laser deposition of single crystal and directionally-solidified superalloys, it is desired to...
In the manufacture of parts by direct metal deposition it is common to inject powder into a molten p...
This study presents two analytical models for the laser powder bed fusion (LPBF) process. To begin, ...
This paper focuses on computational modeling of Scanning Laser Epitaxy (SLE), an additive manufactu...
AbstractA self-consistent three-dimensional mathematical model was developed to predict the crystal ...
This paper focuses on microstructure evolution in single-crystal alloys processed through scanning ...
AbstractThis paper presents a numerical model which simulates the dynamic molten pool formation and ...
Single layer deposits consisting of Mar-M 247 powder were consolidated on Alloy 718 polycrystalline...
The continued drive for increased efficiency, performance and reduced costs for aircraft and industr...
This paper presents recent progress on scanning laser epitaxy, a laser manufacturing technique bein...
Scanning Laser Epitaxy (SLE) is a new laser-based layer-by-layer generative manufacturing technology...
This paper reports on the experimental development and the theoretical analysis of the scanning las...
Ni-based superalloy single crystals were grown by different methods (gradient method and Bridgman te...
In this paper laser metal deposition (LMD) with blown powder was reviewed with respect to the materi...
One of the well-known AM techniques is laser powder-bed fusion (LPBF), which enables engineers to be...
In the laser deposition of single crystal and directionally-solidified superalloys, it is desired to...
In the manufacture of parts by direct metal deposition it is common to inject powder into a molten p...
This study presents two analytical models for the laser powder bed fusion (LPBF) process. To begin, ...
This paper focuses on computational modeling of Scanning Laser Epitaxy (SLE), an additive manufactu...