Sem informaçãoPorous solids comprising a self-entangled coiled polymer fibre or metal wire reversibly increase their volume when either stretched or compressed in an axial direction, possibly providing a new type of mechanical behaviour for tuning functional properties.15178Sem informaçãoSem informaçãoSem informaçã
Engineering artificial protein hydrogels for medical applications requires precise control over thei...
This paper explores the use of simultaneous tensile buckling of unit cells to induce a transformatio...
International audienceAbstract When a suspension of spherical or near-spherical particles passes thr...
Fibrous entangled media are interesting architectured materials because of their numerous different ...
International audienceMonofilament entangled materials are a new type of materials with promising me...
In a global context of energy saving, the ratio stiffness – mass is a key parameter for design of me...
Entanglement is essential to the function of many physical systems. Flexibility and length determine...
In the search for materials with new properties, there have been significant advances in recent year...
L’objectif de ce travail est d’élaborer et de caractériser pour des applications biomédicalesun maté...
The mechanics of fibrous materials is both complex and intriguing. Here, we explore one class of suc...
The current environment crisis has forced a compelling trend of rapidly expanding degradable biomass...
After many years of intense research, most aspects of the motion of entangled polymers have been und...
Entangled materials can be manufactured using fibers made from various materials, such as carbon, gl...
Chain rotations in macromolecular solids are constrained by entanglements. The effects of constraint...
Mechanical metamaterials are periodic lattice structures with complex unit cell architectures that c...
Engineering artificial protein hydrogels for medical applications requires precise control over thei...
This paper explores the use of simultaneous tensile buckling of unit cells to induce a transformatio...
International audienceAbstract When a suspension of spherical or near-spherical particles passes thr...
Fibrous entangled media are interesting architectured materials because of their numerous different ...
International audienceMonofilament entangled materials are a new type of materials with promising me...
In a global context of energy saving, the ratio stiffness – mass is a key parameter for design of me...
Entanglement is essential to the function of many physical systems. Flexibility and length determine...
In the search for materials with new properties, there have been significant advances in recent year...
L’objectif de ce travail est d’élaborer et de caractériser pour des applications biomédicalesun maté...
The mechanics of fibrous materials is both complex and intriguing. Here, we explore one class of suc...
The current environment crisis has forced a compelling trend of rapidly expanding degradable biomass...
After many years of intense research, most aspects of the motion of entangled polymers have been und...
Entangled materials can be manufactured using fibers made from various materials, such as carbon, gl...
Chain rotations in macromolecular solids are constrained by entanglements. The effects of constraint...
Mechanical metamaterials are periodic lattice structures with complex unit cell architectures that c...
Engineering artificial protein hydrogels for medical applications requires precise control over thei...
This paper explores the use of simultaneous tensile buckling of unit cells to induce a transformatio...
International audienceAbstract When a suspension of spherical or near-spherical particles passes thr...