Metallic glasses (MGs) exhibit outstanding mechanical and functional properties for numerous applications. However, although intensive research on the deformation and fracture mechanisms has been performed on metallic glasses for more than 20 years, the fundamental mechanisms governing the mechanical behaviour as well as the recently observed mechanical size effects in this class of materials are still not fully understood. Recently, amorphous Zr65Ni35 (%at) freestanding thin film MGs (TFMGs) deposited by magnetron sputtering have been deformed using a ‘’lab-on-chip’’ technique based on MEMS technology [1]. The results have shown that the ductility of the films is highly enhanced compared to bulk MGs and other TFMGs in the literature, and t...
International audienceMechanical size effects in Zr65Ni35 Thin Film Metallic Glass (TFMG) are studie...
Thin film metallic-glasses (TFMGs) are a promising structural material for fabricating the next gene...
Mechanical size effects in ZrxNi100-x thin metallic glass films are investigated for thicknesses fro...
The fundamental plasticity mechanisms in thin freestanding Zr65Ni35 metallic glass films are investi...
International audienceMotivated by recent studies demonstrating a high strength- high ductility pote...
Motivated by recent studies demonstrating a high strength - high ductility potential of nano-scale m...
Bulk metallic glasses (BMGs) exhibit some outstanding mechanical properties involving high fracture ...
International audienceThe fundamental plasticity mechanisms in thin freestanding Zr 65 Ni 35 metalli...
Bulk metallic glasses are known for their superior mechanical properties with respect to crystalline...
International audienceThe fundamental plasticity mechanisms in thin freestanding Zr 65 Ni 35 metalli...
Thin film metallic glasses (TFMGs) have recently attracted attention with a potential to mitigate th...
Mechanical size effects in Zr65Ni35 Thin Film Metallic Glass (TFMG) are studied with an emphasis on ...
International audienceMechanical size effects in Zr65Ni35 Thin Film Metallic Glass (TFMG) are studie...
International audienceMechanical size effects in Zr65Ni35 Thin Film Metallic Glass (TFMG) are studie...
International audienceMechanical size effects in Zr65Ni35 Thin Film Metallic Glass (TFMG) are studie...
International audienceMechanical size effects in Zr65Ni35 Thin Film Metallic Glass (TFMG) are studie...
Thin film metallic-glasses (TFMGs) are a promising structural material for fabricating the next gene...
Mechanical size effects in ZrxNi100-x thin metallic glass films are investigated for thicknesses fro...
The fundamental plasticity mechanisms in thin freestanding Zr65Ni35 metallic glass films are investi...
International audienceMotivated by recent studies demonstrating a high strength- high ductility pote...
Motivated by recent studies demonstrating a high strength - high ductility potential of nano-scale m...
Bulk metallic glasses (BMGs) exhibit some outstanding mechanical properties involving high fracture ...
International audienceThe fundamental plasticity mechanisms in thin freestanding Zr 65 Ni 35 metalli...
Bulk metallic glasses are known for their superior mechanical properties with respect to crystalline...
International audienceThe fundamental plasticity mechanisms in thin freestanding Zr 65 Ni 35 metalli...
Thin film metallic glasses (TFMGs) have recently attracted attention with a potential to mitigate th...
Mechanical size effects in Zr65Ni35 Thin Film Metallic Glass (TFMG) are studied with an emphasis on ...
International audienceMechanical size effects in Zr65Ni35 Thin Film Metallic Glass (TFMG) are studie...
International audienceMechanical size effects in Zr65Ni35 Thin Film Metallic Glass (TFMG) are studie...
International audienceMechanical size effects in Zr65Ni35 Thin Film Metallic Glass (TFMG) are studie...
International audienceMechanical size effects in Zr65Ni35 Thin Film Metallic Glass (TFMG) are studie...
Thin film metallic-glasses (TFMGs) are a promising structural material for fabricating the next gene...
Mechanical size effects in ZrxNi100-x thin metallic glass films are investigated for thicknesses fro...