Micro-porous nickel (Ni) with an open cell structure was fabricated by a special powder metallurgical process, which includes the adding of a space-holding material. The average pore size of the micro-porous Ni samples approximated 30 μm and 150 μm, and the porosity ranged from 60 % to 80 %. The porous characteristics of the Ni samples were observed using scanning electron microscopy (SEM) and the mechanical properties were evaluated using compressive tests. For comparison, porous Ni samples with a macro-porous structure prepared by both powder metallurgy(pore size 800 μm) and the traditional chemical vapour deposition (CVD) method (pore size 1300 μm) were also presented. Results indicated that the porous Ni samples with a micro...
Long-term fixation of biomedical implants is achievable by using porous materials. These kinds of ma...
Microporous titanium was fabricated by a special powder metallurgy process and the microstructure an...
An investigation was performed to evaluate the potential of the spark plasma sintering process in pr...
Micro-porous nickel foams with an open cell structure were fabricated by the space-holding sintering...
In the present study, nickel foams with an open cell microporous structure were fabricated by the so...
Usually porous metals are known as relatively excellent characteristic such as large surface area, l...
In the present study, porous nickel foam samples with pore sizes of 20 μm and 150 μm and poros...
In the present study, porous nickel foams with three different porosities (i.e. 50 %, 60 % and 70 %)...
The oxidation behavior of two types of inhomogeneous nickel was investigated in air at 1273 K for a ...
Sintered metallic porous structures have an application as capillary structures in two-phase heat tr...
In this work, porous Ni-625 superalloys were produced by use of a water soluble pore forming agent p...
Sintered metallic porous structures have an application as capillary structures in two-phase heat tr...
grantor: University of TorontoPure Nickel can be deposited from a Carbonyl vapour gas, by ...
Porous metals with a large surface-to-volume ratio, light weight, and excellent electrical/thermal c...
A technique has been recently developed to produce foamed metallic structures from dry powder blends...
Long-term fixation of biomedical implants is achievable by using porous materials. These kinds of ma...
Microporous titanium was fabricated by a special powder metallurgy process and the microstructure an...
An investigation was performed to evaluate the potential of the spark plasma sintering process in pr...
Micro-porous nickel foams with an open cell structure were fabricated by the space-holding sintering...
In the present study, nickel foams with an open cell microporous structure were fabricated by the so...
Usually porous metals are known as relatively excellent characteristic such as large surface area, l...
In the present study, porous nickel foam samples with pore sizes of 20 μm and 150 μm and poros...
In the present study, porous nickel foams with three different porosities (i.e. 50 %, 60 % and 70 %)...
The oxidation behavior of two types of inhomogeneous nickel was investigated in air at 1273 K for a ...
Sintered metallic porous structures have an application as capillary structures in two-phase heat tr...
In this work, porous Ni-625 superalloys were produced by use of a water soluble pore forming agent p...
Sintered metallic porous structures have an application as capillary structures in two-phase heat tr...
grantor: University of TorontoPure Nickel can be deposited from a Carbonyl vapour gas, by ...
Porous metals with a large surface-to-volume ratio, light weight, and excellent electrical/thermal c...
A technique has been recently developed to produce foamed metallic structures from dry powder blends...
Long-term fixation of biomedical implants is achievable by using porous materials. These kinds of ma...
Microporous titanium was fabricated by a special powder metallurgy process and the microstructure an...
An investigation was performed to evaluate the potential of the spark plasma sintering process in pr...