The quest for new light-weight materials with superior mechanical properties is a goal of materials scientists and engineers worldwide. A promising route in this pursuit is drawing inspiration from nature to design and develop materials with enhanced properties. By emulating the graded mineral content and hierarchical structure of fish scales of the Arapaima gigas from the nano to macro scales, we were able to develop bioinspired laminated composites with improved impact resistance. Activated by the addition of nano-particles of Al2O3 and nano-layers of TiN to a thermoplastic fiber substrate, new energy dissipation mechanisms operating at the nanoscale enhanced the energy absorption and stiffness of the bioinspired material. Remarkably, the...
Over the last decade, the explosion in research and Development associated with nanoscalar materials...
Bioinspired architectures are effective in enhancing the mechanical properties of materials, yet are...
Mantis shrimps use their dactyl club to strike multiple high-velocity impacts against stiff and hard...
The search for impact-tolerant, light-weight flexible materials has challenged materials scientists ...
In nature there is a wealth of mineral-based and protein-based bio-composites spe- cially designed t...
Next-generation structural materials are expected to be lightweight, high-strength and tough composi...
Biologically mineralized composites offer inspiration for the design of next generation structural m...
Biologically mineralized composites offer inspiration for the design of next generation structural m...
Composite laminated materials have been largely implemented in advanced applications due to the high...
Composites play an important role as structural materials in a range of engineering fields due to th...
To help meet the needs for a new generation of advanced, high-performance composites required for ne...
The high demand for engineering lightweight materials with an optimal strength- toughness balance is...
The high demand for engineering lightweight materials with an optimal strength- toughness balance is...
The high demand for engineering lightweight materials with an optimal strength- toughness balance is...
The high demand for engineering lightweight materials with an optimal strength- toughness balance is...
Over the last decade, the explosion in research and Development associated with nanoscalar materials...
Bioinspired architectures are effective in enhancing the mechanical properties of materials, yet are...
Mantis shrimps use their dactyl club to strike multiple high-velocity impacts against stiff and hard...
The search for impact-tolerant, light-weight flexible materials has challenged materials scientists ...
In nature there is a wealth of mineral-based and protein-based bio-composites spe- cially designed t...
Next-generation structural materials are expected to be lightweight, high-strength and tough composi...
Biologically mineralized composites offer inspiration for the design of next generation structural m...
Biologically mineralized composites offer inspiration for the design of next generation structural m...
Composite laminated materials have been largely implemented in advanced applications due to the high...
Composites play an important role as structural materials in a range of engineering fields due to th...
To help meet the needs for a new generation of advanced, high-performance composites required for ne...
The high demand for engineering lightweight materials with an optimal strength- toughness balance is...
The high demand for engineering lightweight materials with an optimal strength- toughness balance is...
The high demand for engineering lightweight materials with an optimal strength- toughness balance is...
The high demand for engineering lightweight materials with an optimal strength- toughness balance is...
Over the last decade, the explosion in research and Development associated with nanoscalar materials...
Bioinspired architectures are effective in enhancing the mechanical properties of materials, yet are...
Mantis shrimps use their dactyl club to strike multiple high-velocity impacts against stiff and hard...