Soft fiber‐reinforced polymers (FRPs), consisting of rubbery matrices and rigid fabrics, are widely utilized in industry because they possess high specific strength in tension while allowing flexural deformation under bending or twisting. Nevertheless, existing soft FRPs are relatively weak against crack propagation due to interfacial delamination, which substantially increases their risk of failure during use. In this work, a class of soft FRPs that possess high specific strength while simultaneously showing extraordinary crack resistance are developed. The strategy is to synthesize tough viscoelastic matrices from acrylate monomers in the presence of woven fabrics, which generates soft composites with a strong interface and interlocking s...
International audienceIn this work, we analyze the influence of different fiber surface treatments o...
The interlaminar fracture toughness, GIc, of unidirectional carbon fibre composite laminates produce...
textThe mechanical properties of glass fiber reinforced, rubber toughened nylon 6 are presented with...
The toughness of composite materials is size dependent below a critical load transfer length (lT). F...
Fiber reinforced soft composites (FRSCs) have been developed recently by combining tough but soft po...
Tough hydrogels have shown strong potential as structural biomaterials. These hydrogels alone, howev...
Improving the fracture toughness of the polymer matrix has been a concentration of research effort f...
A novel composite material is reported, in which tension, applied to polymeric fibres, is released p...
Ligaments are unique wet biological tissues with high tensile modulus and fracture stress, combined ...
The mechanical properties and fracture mechanics of a series of short glass fibre reinforced and rub...
The time dependence of fracture toughness of two different acrylic resins, one plain and one toughen...
Failures in fiber-reinforced polymeric composites are often found to occur in the matrix. This matri...
Woven fabrics made of a natural lignocellulosic mallow fiber have been used for a long time in commo...
A classic paradigm of soft and extensible polymer materials is the difficulty of combining reversibl...
International audienceIn this work, we analyze the influence of different fiber surface treatments o...
The interlaminar fracture toughness, GIc, of unidirectional carbon fibre composite laminates produce...
textThe mechanical properties of glass fiber reinforced, rubber toughened nylon 6 are presented with...
The toughness of composite materials is size dependent below a critical load transfer length (lT). F...
Fiber reinforced soft composites (FRSCs) have been developed recently by combining tough but soft po...
Tough hydrogels have shown strong potential as structural biomaterials. These hydrogels alone, howev...
Improving the fracture toughness of the polymer matrix has been a concentration of research effort f...
A novel composite material is reported, in which tension, applied to polymeric fibres, is released p...
Ligaments are unique wet biological tissues with high tensile modulus and fracture stress, combined ...
The mechanical properties and fracture mechanics of a series of short glass fibre reinforced and rub...
The time dependence of fracture toughness of two different acrylic resins, one plain and one toughen...
Failures in fiber-reinforced polymeric composites are often found to occur in the matrix. This matri...
Woven fabrics made of a natural lignocellulosic mallow fiber have been used for a long time in commo...
A classic paradigm of soft and extensible polymer materials is the difficulty of combining reversibl...
International audienceIn this work, we analyze the influence of different fiber surface treatments o...
The interlaminar fracture toughness, GIc, of unidirectional carbon fibre composite laminates produce...
textThe mechanical properties of glass fiber reinforced, rubber toughened nylon 6 are presented with...