Detail publikačního výsledku
Effect of Porosity Gradient on Mechanical Properties of Cellular Nano-Composites
JANČÁŘ, J.; ZÁRYBNICKÁ, K.; ŽÍDEK, J.; KUČERA, F.
Originální název
Effect of Porosity Gradient on Mechanical Properties of Cellular Nano-Composites
Anglický název
Effect of Porosity Gradient on Mechanical Properties of Cellular Nano-Composites
Druh
Článek WoS
Originální abstrakt
With their hierarchical architectures incorporating gradients in composition, porosity, and orientation, natural materials have evolved optimized balance of mechanical properties. Deciphered from the structure of bamboo, we prepared cellular solids with convex and/or concave porosity gradient and investigated their static mechanical and impact properties. Non-monotonous porosity dependences of tensile, crush, and impact strength were related to the shape of porosity gradient rather than to the properties of the wall material alone. Our results provide experimental evidence, that novel mechanically robust low density additively fabricated cellular nano-composites with convex porosity gradient satisfy the structural requirements of lightweight engineering parts. Moreover, novel functions, such as reduced flammability or electrical conductivity, can easily be introduced by selecting the type and spatial organization of nanoparticles and cellular structure of the cellular micro-particles (CMPs).
Anglický abstrakt
With their hierarchical architectures incorporating gradients in composition, porosity, and orientation, natural materials have evolved optimized balance of mechanical properties. Deciphered from the structure of bamboo, we prepared cellular solids with convex and/or concave porosity gradient and investigated their static mechanical and impact properties. Non-monotonous porosity dependences of tensile, crush, and impact strength were related to the shape of porosity gradient rather than to the properties of the wall material alone. Our results provide experimental evidence, that novel mechanically robust low density additively fabricated cellular nano-composites with convex porosity gradient satisfy the structural requirements of lightweight engineering parts. Moreover, novel functions, such as reduced flammability or electrical conductivity, can easily be introduced by selecting the type and spatial organization of nanoparticles and cellular structure of the cellular micro-particles (CMPs).
Klíčová slova
nano-composites; cellular materials; porosity gradient; mechanical properties
Klíčová slova v angličtině
nano-composites; cellular materials; porosity gradient; mechanical properties
Autoři
JANČÁŘ, J.; ZÁRYBNICKÁ, K.; ŽÍDEK, J.; KUČERA, F.
Rok RIV
2021
Vydáno
01.03.2020
Nakladatel
MDPI
Místo
BASEL
ISSN
2073-4360
Periodikum
Polymers
Svazek
12
Číslo
3
Stát
Švýcarská konfederace
Strany od
681-1
Strany do
681-12
Strany počet
12
URL
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