Despite their transformative role in our society, oxide glasses remain brittle. Although extrinsic postprocessing techniques can partially mitigate this drawback, they come with undesirable side effects. Alternatively, topological engineering offers an attractive option to enhance the intrinsic strength and damage resistance of glass. On the basis of this approach, we report here the discovery of a novel melt-quenched lithium aluminoborate glass featuring the highest crack resistance ever reported for a bulk oxide glass. Relying on combined mechanical and structural characterizations, we demonstrate that this unusual damage resistance originates from a significant self-adaptivity of the local atomic topology under stress, which, based on a ...
Summary: Glasses with high hardness, high Young's modulus, and high fracture toughness become crucia...
International audienceDuring 2022, the global market for flat glass is estimated to exceed 100 billi...
In this study, for the first time, a cluster-plus-glue-atom model was used to optimize the compositi...
Oxide glasses are one of the most important engineering and functional material families owing to th...
International audienceThe development of new glassy materials is key for addressing major global cha...
International audienceAluminosilicate glasses are widely used and investigated materials with curren...
Oxide glasses are an integral part of the modern world, but their usefulness can be limited by their...
AbstractWe provide a comprehensive description of the defect tolerance of sodium-borosilicate glasse...
Bulk-metallic glasses (BMGs) are now candidate materials for structural applications due to their ex...
International audienceMaterial degradation due to everyday wear and tear, sand storms, external irra...
Generally, we are accustomed to consider glass an inert and durable material with high chemical stab...
Oxide glasses are an elementary group of materials in modern society, but brittleness limits their w...
International audienceStress corrosion cracking is a well-known phenomenon in oxide glasses. However...
As structural materials, crystalline or metallic glass materials have attracted scientific and pract...
Glass is a widely used engineering material because of its optical properties, hardness, durability,...
Summary: Glasses with high hardness, high Young's modulus, and high fracture toughness become crucia...
International audienceDuring 2022, the global market for flat glass is estimated to exceed 100 billi...
In this study, for the first time, a cluster-plus-glue-atom model was used to optimize the compositi...
Oxide glasses are one of the most important engineering and functional material families owing to th...
International audienceThe development of new glassy materials is key for addressing major global cha...
International audienceAluminosilicate glasses are widely used and investigated materials with curren...
Oxide glasses are an integral part of the modern world, but their usefulness can be limited by their...
AbstractWe provide a comprehensive description of the defect tolerance of sodium-borosilicate glasse...
Bulk-metallic glasses (BMGs) are now candidate materials for structural applications due to their ex...
International audienceMaterial degradation due to everyday wear and tear, sand storms, external irra...
Generally, we are accustomed to consider glass an inert and durable material with high chemical stab...
Oxide glasses are an elementary group of materials in modern society, but brittleness limits their w...
International audienceStress corrosion cracking is a well-known phenomenon in oxide glasses. However...
As structural materials, crystalline or metallic glass materials have attracted scientific and pract...
Glass is a widely used engineering material because of its optical properties, hardness, durability,...
Summary: Glasses with high hardness, high Young's modulus, and high fracture toughness become crucia...
International audienceDuring 2022, the global market for flat glass is estimated to exceed 100 billi...
In this study, for the first time, a cluster-plus-glue-atom model was used to optimize the compositi...