Build thickness dependent microstructure of electron beam melted (EBM®) Ti–6Al–4V has been investigated from both experiment and simulation using four block samples with thicknesses of 1, 5, 10 and 20 mm. We observe a mixed microstructure of alternate α/β with some α′ martensite inside the 1 mm-thick sample. By contrast, only the alternate α/β microstructure with both colony and basket-weave morphologies occurs inside the 5 mm-, 10 mm- and 20 mm-thick samples. It is found that β spacing is constantly increased with the build thickness, leading to an obvious decrease in microhardness. Finite element method (FEM) simulations show that cooling rates and thermal profiles during EBM process are favorable for the formation of martensite. Moreover...
Electron beam melting (EBM) is one of the powder-bed fusion additive manufacturing technologies. Th...
In this study, involving additive manufacturing (AM) using electron beam melting (EBM), we have exa...
The work presented in this dissertation is concerned with the microstructures and surface roughness...
An experimental and simulation study on build thickness dependent microstructure for electron beam m...
The effect of sample dimensions and process parameters (beam current, scan speed, offset focus and s...
Electron beam powder bed fusion (EB-PBF) is a process to additively manufacture Ti–6Al–4V. Along wit...
Electron Beam Melting (EBM), a powder bed additive layer manufacturing process, was used to produce ...
With the demand of devices to replace or improve areas, such as: electronic, biomedical and aerospac...
In the current work an investigation of the microstructures of EBM built Ti-6Al-4V test bars has be...
The work presented in this dissertation is concerned with the microstructures and surface roughness ...
With the demand of devices to replace or improve areas, such as: electronic, biomedical and aerospac...
International audienceElectron Beam Melting (EBM), a powder bed additive layer manufacturing process...
The Electron Beam Melting (EBM) is an Additive Layer Manufacturing (ALM) technique used to directly ...
The inferior mechanical properties of EBAM Ti-6Al-4V samples are due to the coarse columnar grains c...
The geometry and material properties of additively manufactured (AM) parts are closely related in a ...
Electron beam melting (EBM) is one of the powder-bed fusion additive manufacturing technologies. Th...
In this study, involving additive manufacturing (AM) using electron beam melting (EBM), we have exa...
The work presented in this dissertation is concerned with the microstructures and surface roughness...
An experimental and simulation study on build thickness dependent microstructure for electron beam m...
The effect of sample dimensions and process parameters (beam current, scan speed, offset focus and s...
Electron beam powder bed fusion (EB-PBF) is a process to additively manufacture Ti–6Al–4V. Along wit...
Electron Beam Melting (EBM), a powder bed additive layer manufacturing process, was used to produce ...
With the demand of devices to replace or improve areas, such as: electronic, biomedical and aerospac...
In the current work an investigation of the microstructures of EBM built Ti-6Al-4V test bars has be...
The work presented in this dissertation is concerned with the microstructures and surface roughness ...
With the demand of devices to replace or improve areas, such as: electronic, biomedical and aerospac...
International audienceElectron Beam Melting (EBM), a powder bed additive layer manufacturing process...
The Electron Beam Melting (EBM) is an Additive Layer Manufacturing (ALM) technique used to directly ...
The inferior mechanical properties of EBAM Ti-6Al-4V samples are due to the coarse columnar grains c...
The geometry and material properties of additively manufactured (AM) parts are closely related in a ...
Electron beam melting (EBM) is one of the powder-bed fusion additive manufacturing technologies. Th...
In this study, involving additive manufacturing (AM) using electron beam melting (EBM), we have exa...
The work presented in this dissertation is concerned with the microstructures and surface roughness...