International audienceA promising route for manufacturing emergent metamaterials is the use of ultrafast laser pulses in complex alloy processing. Laser-induced structural transformations in Zr based alloys for crystalline and glassy states are investigated here. The ultrafast thermomechanical response is compared between relevant stable crystalline structures B2-Cu50Zr50, C11 b-Cu33.3Zr66.7 and the amorphous structures α-Cu50Zr50, α-Cu33.3Zr66.7. The subsurface modification resulting from ultrafast laser irradiation is investigated by a hybrid simulation to capture the phenomenon occurring at a picosecond time scale. This combines a two temperature model and molecular dynamics approaches to simulate laser matter interaction at the mesoscal...
In this study, the laser scanning speed used during laser surface processing of a Zr-based bulk meta...
Секция 1. Процессы взаимодействия излучений и плазмы с твердым теломInfluence of laser emission on a...
In the present study, molecular dynamics simulation employing embedded atom method (EAM) potential i...
International audienceA promising route for manufacturing emergent metamaterials is the use of ultra...
International audienceThe main originality of this work is to investigate the ultrafast phenomena an...
International audienceThe physics of metallic glass local devitrification employing ultrafast laser ...
International audienceSurface structuring of both amorphous and crystals materials may find interest...
As a promising additive manufacturing technique, selective laser melting (SLM) provides the possibil...
International audienceSurface nanostructuring by femtosecond laser is an efficient way to manipulate...
In this work, we comprehensively investigate the response of amorphous and crystalline Zr-based allo...
The unique set of mechanical and magnetic properties possessed by metallic glasses has attracted a l...
Phase evolution induced by single or repeated excitation with energetic femtosecond laser pulses is ...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
Additive manufacturing by laser-based powder bed fusion is a promising technique for bulk metallic g...
In this study, the laser scanning speed used during laser surface processing of a Zr-based bulk meta...
Секция 1. Процессы взаимодействия излучений и плазмы с твердым теломInfluence of laser emission on a...
In the present study, molecular dynamics simulation employing embedded atom method (EAM) potential i...
International audienceA promising route for manufacturing emergent metamaterials is the use of ultra...
International audienceThe main originality of this work is to investigate the ultrafast phenomena an...
International audienceThe physics of metallic glass local devitrification employing ultrafast laser ...
International audienceSurface structuring of both amorphous and crystals materials may find interest...
As a promising additive manufacturing technique, selective laser melting (SLM) provides the possibil...
International audienceSurface nanostructuring by femtosecond laser is an efficient way to manipulate...
In this work, we comprehensively investigate the response of amorphous and crystalline Zr-based allo...
The unique set of mechanical and magnetic properties possessed by metallic glasses has attracted a l...
Phase evolution induced by single or repeated excitation with energetic femtosecond laser pulses is ...
The effects of cooling rate, temperature, and applied strain rate on the tensile deformation behavio...
Additive manufacturing by laser-based powder bed fusion is a promising technique for bulk metallic g...
In this study, the laser scanning speed used during laser surface processing of a Zr-based bulk meta...
Секция 1. Процессы взаимодействия излучений и плазмы с твердым теломInfluence of laser emission on a...
In the present study, molecular dynamics simulation employing embedded atom method (EAM) potential i...