In-situ high temperature measurement in a scanning electron microscopy (SEM) environment is an important technique for exploring the microstructure evolution and crack propagation within refractory materials and other advanced alloys. In this paper, in-situ tensile fatigue experiments under SEM environment at room temperature and elevated temperature are performed for studying the fatigue performance and crack propagation process of selective laser melting (SLM) additive manufactured Al-Si10-Mg materials. Firstly, in-situ SLM additive manufactured Al-Si10-Mg fatigue tensile samples are prepared, and micro-CT are employed for the characterization of void defects within SLM additive manufactured Al-Si10-Mg with different laser scanning speeds...
The effect of selective laser melting (SLM), an additive manufacturing technique employed to produce...
The dwell-fatigue responses of high temperature materials, such as IN718, manufactured via additive ...
Selective Laser Melting (SLM), a type of Additive Manufacturing (AM), is versatile manufacturing met...
In-situ high temperature measurement in a scanning electron microscopy (SEM) environment is an impor...
The creep-fatigue fracture behavior of selective laser melting (SLM) AlSi10Mg alloy was studied by c...
Aluminum alloys processed through selective laser melting possess unique features of microstructure,...
Selective laser melting (SLM) is one of the most promising metal additive manufacturing technologies...
Advances in machine systems and scanning technologies have increased the use of selective laser melt...
International audienceThis work shows the impact of microstructure and defect on the fatigue life of...
Selective laser melting (SLM) is a novel technique in laser additive manufacturing which uses laser ...
Process-induced microstructures have a high impact on the fatigue strength of engineering materials....
The second-generation aluminum-magnesium-scandium (Al-Mg-Sc) alloy, which is often referred to as Sc...
Selective Laser Melting is an additive manufacturing technology capable of producing relatively dens...
The effect of selective laser melting (SLM), an additive manufacturing technique employed to produce...
The dwell-fatigue responses of high temperature materials, such as IN718, manufactured via additive ...
Selective Laser Melting (SLM), a type of Additive Manufacturing (AM), is versatile manufacturing met...
In-situ high temperature measurement in a scanning electron microscopy (SEM) environment is an impor...
The creep-fatigue fracture behavior of selective laser melting (SLM) AlSi10Mg alloy was studied by c...
Aluminum alloys processed through selective laser melting possess unique features of microstructure,...
Selective laser melting (SLM) is one of the most promising metal additive manufacturing technologies...
Advances in machine systems and scanning technologies have increased the use of selective laser melt...
International audienceThis work shows the impact of microstructure and defect on the fatigue life of...
Selective laser melting (SLM) is a novel technique in laser additive manufacturing which uses laser ...
Process-induced microstructures have a high impact on the fatigue strength of engineering materials....
The second-generation aluminum-magnesium-scandium (Al-Mg-Sc) alloy, which is often referred to as Sc...
Selective Laser Melting is an additive manufacturing technology capable of producing relatively dens...
The effect of selective laser melting (SLM), an additive manufacturing technique employed to produce...
The dwell-fatigue responses of high temperature materials, such as IN718, manufactured via additive ...
Selective Laser Melting (SLM), a type of Additive Manufacturing (AM), is versatile manufacturing met...