A nondestructive impulse excitation technique was used to investigate Poisson’s ratio of powder metallurgical pure closed-cell aluminium foams according to ASTM E 1876 within the foam density range of 0.430–1.390 g·cm−3. Instead of a constant value of 0.34, as according to Gibson and Ashby’s assumption for the Poisson’s ratio of metallic foams, the decrease of the Poisson’s ratio with decreasing foam density was observed. Observed Poisson’s ratio data were in the range of 0.21–0.34. To check the validity of the results, the Young’s modulus was calculated using Poisson’s ratio and its dependence on relative density was successfully modelled using the usual power law function ...
Foamed materials are widespread in industry applications. While polymeric foams have been applied fo...
International audienceThe main objective of the present investigation is to develop an analytical st...
A new powder metallurgical method for the production of foamed metals with very low apparent densiti...
A nondestructive impulse excitation technique was used to investigate Poisson’s ratio of powde...
The moduli of porous materials have been extensively studied analytically as well as experimentally....
The properties of the Poisson's ratio of microcellular foams with an internal pressure in the v...
An equation has been derived for the prediction of the Poisson's ratio of porous materials having ri...
Metal foams are lightweight structures and have large use in many components acting as impact energy...
Elastic properties of open-cell metallic foams are investigated in correlation with relative density...
We tested whether conventional and auxetic (negative Poisson’s ratio) foam indentation response fits...
Fracture toughness of re-entrant foam materials with a negative Poisson's ratio is explored exp...
The moduli of porous materials have been extensively studied analytically as well as experimentally....
Measurements of Poisson's ratios have been made in three orthogonal directions on aluminum alloy blo...
The temperature dependence of mechanical properties of aluminum foams has been investigated. Young's...
This work analyses shear moduli of conventional and auxetic open-cell polymer foams. Shear moduli ar...
Foamed materials are widespread in industry applications. While polymeric foams have been applied fo...
International audienceThe main objective of the present investigation is to develop an analytical st...
A new powder metallurgical method for the production of foamed metals with very low apparent densiti...
A nondestructive impulse excitation technique was used to investigate Poisson’s ratio of powde...
The moduli of porous materials have been extensively studied analytically as well as experimentally....
The properties of the Poisson's ratio of microcellular foams with an internal pressure in the v...
An equation has been derived for the prediction of the Poisson's ratio of porous materials having ri...
Metal foams are lightweight structures and have large use in many components acting as impact energy...
Elastic properties of open-cell metallic foams are investigated in correlation with relative density...
We tested whether conventional and auxetic (negative Poisson’s ratio) foam indentation response fits...
Fracture toughness of re-entrant foam materials with a negative Poisson's ratio is explored exp...
The moduli of porous materials have been extensively studied analytically as well as experimentally....
Measurements of Poisson's ratios have been made in three orthogonal directions on aluminum alloy blo...
The temperature dependence of mechanical properties of aluminum foams has been investigated. Young's...
This work analyses shear moduli of conventional and auxetic open-cell polymer foams. Shear moduli ar...
Foamed materials are widespread in industry applications. While polymeric foams have been applied fo...
International audienceThe main objective of the present investigation is to develop an analytical st...
A new powder metallurgical method for the production of foamed metals with very low apparent densiti...