The crystallization rate during selective laser melting (SLM) of bulk metallic glasses (BMG) is a critical factor in maintaining the material's amorphous structure. To increase the understanding of the interplay between the SLM process and the crystallization behavior of BMGs, a numerical model based on the classical nucleation theory has been developed that accounts for the rapid temperature changes associated with SLM. The model is applied to SLM of a Zr-based BMG and it is shown that the transient effects, accounted for by the model, reduce the nucleation rate by up to 15 orders of magnitude below the steady-state nucleation rate on cooling, resulting in less nuclei during the build process. The capability of the proposed modelling appro...
Metallic glasses (MGs) have superior mechanical properties such as high tensile strength, hardness, ...
cited By 13International audienceNon-isothermal crystallization transformation kinetics and isotherm...
The crystallisation behaviour of Zr41.2Ti13.8Cu12.5Ni10.0Be22.5, bulk metallic glass (BMG) alloy dur...
The crystallization rate during selective laser melting (SLM) of bulk metallic glasses (BMG) is a cr...
As a promising additive manufacturing technique, selective laser melting (SLM) provides the possibil...
In this study, experiments are carried out to demonstrate that in laser welding of a Zr-based (Zr52....
Additive manufacturing by laser-based powder bed fusion is a promising technique for bulk metallic g...
Additive manufacturing by laser-based powder bed fusion is a promising technique for bulk metallic g...
Additive manufacturing by laser-based powder bed fusion is a promising technique for bulk metallic g...
Additive manufacturing by laser-based powder bed fusion is a promising technique for bulk metallic g...
Additive manufacturing by laser-based powder bed fusion is a promising technique for bulk metallic g...
Classical heterogeneous nucleation theory coupled with DTA data has been used to closely estimate th...
Metallic glasses are non-crystalline metals that are obtained by rapid cooling of the melt to bypass...
Parameters for selective laser melting of Zr59.3Cu28.8Al10.4Nb1.5 (trade name AMZ4), allowing crack-...
Parameters for selective laser melting of Zr59.3Cu28.8Al10.4Nb1.5 (trade name AMZ4), allowing crack-...
Metallic glasses (MGs) have superior mechanical properties such as high tensile strength, hardness, ...
cited By 13International audienceNon-isothermal crystallization transformation kinetics and isotherm...
The crystallisation behaviour of Zr41.2Ti13.8Cu12.5Ni10.0Be22.5, bulk metallic glass (BMG) alloy dur...
The crystallization rate during selective laser melting (SLM) of bulk metallic glasses (BMG) is a cr...
As a promising additive manufacturing technique, selective laser melting (SLM) provides the possibil...
In this study, experiments are carried out to demonstrate that in laser welding of a Zr-based (Zr52....
Additive manufacturing by laser-based powder bed fusion is a promising technique for bulk metallic g...
Additive manufacturing by laser-based powder bed fusion is a promising technique for bulk metallic g...
Additive manufacturing by laser-based powder bed fusion is a promising technique for bulk metallic g...
Additive manufacturing by laser-based powder bed fusion is a promising technique for bulk metallic g...
Additive manufacturing by laser-based powder bed fusion is a promising technique for bulk metallic g...
Classical heterogeneous nucleation theory coupled with DTA data has been used to closely estimate th...
Metallic glasses are non-crystalline metals that are obtained by rapid cooling of the melt to bypass...
Parameters for selective laser melting of Zr59.3Cu28.8Al10.4Nb1.5 (trade name AMZ4), allowing crack-...
Parameters for selective laser melting of Zr59.3Cu28.8Al10.4Nb1.5 (trade name AMZ4), allowing crack-...
Metallic glasses (MGs) have superior mechanical properties such as high tensile strength, hardness, ...
cited By 13International audienceNon-isothermal crystallization transformation kinetics and isotherm...
The crystallisation behaviour of Zr41.2Ti13.8Cu12.5Ni10.0Be22.5, bulk metallic glass (BMG) alloy dur...