AbstractIn this article, we propose a microstructure-based continuum model to describe the material behavior of spider silks. We suppose that the material is composed of a soft fraction with entropic elasticity and a hard, damageable fraction. The hard fraction models the presence of stiffer, crystal-rich, oriented regions and accounts for the effect of softening induced by the breaking of hydrogen bonds. To describe the observed presence of crystals with different size, composition, and orientation, this hard fraction is modeled as a distribution of materials with variable properties. The soft fraction describes the remaining regions of amorphous material and is here modeled as a wormlike chain. During stretching, we consider the effect of...
Spider dragline silk shows the highest toughness in comparison to all other known natural or man-mad...
Spider silk rivals the best synthetic materials in terms of strength and toughness. It is widely acc...
Typical spider dragline silk tends to outperform other natural fibres and most man-made filaments. H...
AbstractIn this article, we propose a microstructure-based continuum model to describe the material ...
Spider silk is one of the strongest, most extensible and toughest biological materials known, exceed...
Orb-weaving spiders produce capture-webs from two mechanically distinct silk types, major ampullate ...
Although spider silk is used by spiders for many purposes, from wrapping prey to lining retreats22, ...
Spider silk is a self-assembling biopolymer that outperforms most known materials in terms of its me...
AbstractThe outstanding mechanical toughness of silk fibers is thought to be caused by embedded crys...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Civil and Environmental Enginee...
This work establishes a tensegrity model of spider dragline silk. Tensegrity systems are ubiquitous ...
AbstractHere we decipher the molecular determinants for the extreme toughness of spider silk fibers....
Spider major ampullate gland silks (MAS) vary greatly in material properties among species but, this...
Spider silks are among the strongest and toughest known materials, but investigation of these remark...
AbstractThe time-dependent stress-strain behavior of spider dragline silk was already observed decad...
Spider dragline silk shows the highest toughness in comparison to all other known natural or man-mad...
Spider silk rivals the best synthetic materials in terms of strength and toughness. It is widely acc...
Typical spider dragline silk tends to outperform other natural fibres and most man-made filaments. H...
AbstractIn this article, we propose a microstructure-based continuum model to describe the material ...
Spider silk is one of the strongest, most extensible and toughest biological materials known, exceed...
Orb-weaving spiders produce capture-webs from two mechanically distinct silk types, major ampullate ...
Although spider silk is used by spiders for many purposes, from wrapping prey to lining retreats22, ...
Spider silk is a self-assembling biopolymer that outperforms most known materials in terms of its me...
AbstractThe outstanding mechanical toughness of silk fibers is thought to be caused by embedded crys...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Civil and Environmental Enginee...
This work establishes a tensegrity model of spider dragline silk. Tensegrity systems are ubiquitous ...
AbstractHere we decipher the molecular determinants for the extreme toughness of spider silk fibers....
Spider major ampullate gland silks (MAS) vary greatly in material properties among species but, this...
Spider silks are among the strongest and toughest known materials, but investigation of these remark...
AbstractThe time-dependent stress-strain behavior of spider dragline silk was already observed decad...
Spider dragline silk shows the highest toughness in comparison to all other known natural or man-mad...
Spider silk rivals the best synthetic materials in terms of strength and toughness. It is widely acc...
Typical spider dragline silk tends to outperform other natural fibres and most man-made filaments. H...