This paper focuses on computational modeling of Scanning Laser Epitaxy (SLE), an additive manufacturing technology being developed at Georgia Tech for the creation of equiaxed, directionally-solidified or single-crystal structures in nickel-based superalloys. The thermal modeling of the system, carried out in a commercial CFD software package, simulates a heat source moving over a powder bed and dynamically adjusts the property values for consolidating CMSX-4 alloy powder. For any given position of the beam, the geometrical parameters of and the temperature gradient in the melt pool are used to estimate the resulting solidification microstructure. Detailed study of the flow field also revealed formation of rotational vortices in the...
This paper presents a computational framework to study the differences in process-induced microvoid ...
This paper presents a computational framework to study the differences in process-induced microvoid ...
This paper presents a computational framework to study the differences in process-induced microvoid ...
This paper focuses on computational modeling of Scanning Laser Epitaxy (SLE), an additive manufactu...
This paper focuses on microstructure evolution in single-crystal alloys processed through scanning ...
This paper focuses on microstructure evolution in single-crystal alloys processed through scanning ...
This paper reports on the experimental development and the theoretical analysis of the scanning las...
This paper reports on the experimental development and the theoretical analysis of the scanning las...
This paper focuses on simulation-based optimization of the Scanning Laser Epitaxy (SLE) process app...
Scanning Laser Epitaxy (SLE) is a new laser-based layer-by-layer generative manufacturing technology...
This paper focuses on simulation-based optimization of the Scanning Laser Epitaxy (SLE) process app...
Engineered components made of superalloys routinely undergo heat treatment procedures to tailor the...
Haynes 282 is a creep-resistant, γ′ strengthened nickel-based superalloy with excellent weldability....
This paper presents a computational framework to study the differences in process-induced microvoid ...
One of the well-known AM techniques is laser powder-bed fusion (LPBF), which enables engineers to be...
This paper presents a computational framework to study the differences in process-induced microvoid ...
This paper presents a computational framework to study the differences in process-induced microvoid ...
This paper presents a computational framework to study the differences in process-induced microvoid ...
This paper focuses on computational modeling of Scanning Laser Epitaxy (SLE), an additive manufactu...
This paper focuses on microstructure evolution in single-crystal alloys processed through scanning ...
This paper focuses on microstructure evolution in single-crystal alloys processed through scanning ...
This paper reports on the experimental development and the theoretical analysis of the scanning las...
This paper reports on the experimental development and the theoretical analysis of the scanning las...
This paper focuses on simulation-based optimization of the Scanning Laser Epitaxy (SLE) process app...
Scanning Laser Epitaxy (SLE) is a new laser-based layer-by-layer generative manufacturing technology...
This paper focuses on simulation-based optimization of the Scanning Laser Epitaxy (SLE) process app...
Engineered components made of superalloys routinely undergo heat treatment procedures to tailor the...
Haynes 282 is a creep-resistant, γ′ strengthened nickel-based superalloy with excellent weldability....
This paper presents a computational framework to study the differences in process-induced microvoid ...
One of the well-known AM techniques is laser powder-bed fusion (LPBF), which enables engineers to be...
This paper presents a computational framework to study the differences in process-induced microvoid ...
This paper presents a computational framework to study the differences in process-induced microvoid ...
This paper presents a computational framework to study the differences in process-induced microvoid ...