Motivated by the hierarchical micro and nanoscale features in terms of porosity of diatomite, the production of ceramic-graded porous foams with tailored porosity, obtained by using it as raw material, has been proposed. The main challenge during the foam-production process has been the preservation of diatomite nanometric porosity and the addition of other levels of hierarchical porosity. The coupled use of two techniques of direct foaming (chemical and mechanical), combined with the use of 3D printing inverse replica method, assured the achievement of porosity of, respectively, microscopic and macroscopic dimensions. Optical and scanning electron microscopies have been performed for an in-depth characterization of the final microstructure...
Processing routes to make oxide ceramic foams of porosity more than 70% with pore sizes in the range...
3D printing is changing the whole manufacturing concept of components and products. The freedom of d...
Using the so-called Freeze-Foaming method, it is possible to ecologically create ceramic cellular sc...
Motivated by the hierarchical micro and nanoscale features in terms of porosity of diatomite, the pr...
The present study illustrates the manufacturing method of hierarchically porous 3D scaffolds based o...
The present study illustrates the manufacturing method of hierarchically porous 3D scaffolds based o...
This paper describes the preparation of ceramic foams by expansion of a ceramic suspension based on ...
Cellular thermoplastic structures with hierarchical multi-scale porosity (preferably 1-300 µm micro-...
In this study, 3D printed open-cell foam were produced and reconstructed from open-cell metal foam s...
Cellular thermoplastic structures with multiscale porosity (1–300 µm microporosity to 0.3–10 mm macr...
Biomedical scaffolds with a high degree of porosity are known to facilitate the growth of healthy fu...
Hierarchical porous materials are widespread in nature and find an increasing number of applications...
This paper presents a novel manufacturing method for cellular materials with a graded porosity distr...
Using the so-called Freeze-Foaming method, it is possible to ecologically create ceramic cellular sc...
The biological hierarchical porous structures have excellent properties that are unmatched by artifi...
Processing routes to make oxide ceramic foams of porosity more than 70% with pore sizes in the range...
3D printing is changing the whole manufacturing concept of components and products. The freedom of d...
Using the so-called Freeze-Foaming method, it is possible to ecologically create ceramic cellular sc...
Motivated by the hierarchical micro and nanoscale features in terms of porosity of diatomite, the pr...
The present study illustrates the manufacturing method of hierarchically porous 3D scaffolds based o...
The present study illustrates the manufacturing method of hierarchically porous 3D scaffolds based o...
This paper describes the preparation of ceramic foams by expansion of a ceramic suspension based on ...
Cellular thermoplastic structures with hierarchical multi-scale porosity (preferably 1-300 µm micro-...
In this study, 3D printed open-cell foam were produced and reconstructed from open-cell metal foam s...
Cellular thermoplastic structures with multiscale porosity (1–300 µm microporosity to 0.3–10 mm macr...
Biomedical scaffolds with a high degree of porosity are known to facilitate the growth of healthy fu...
Hierarchical porous materials are widespread in nature and find an increasing number of applications...
This paper presents a novel manufacturing method for cellular materials with a graded porosity distr...
Using the so-called Freeze-Foaming method, it is possible to ecologically create ceramic cellular sc...
The biological hierarchical porous structures have excellent properties that are unmatched by artifi...
Processing routes to make oxide ceramic foams of porosity more than 70% with pore sizes in the range...
3D printing is changing the whole manufacturing concept of components and products. The freedom of d...
Using the so-called Freeze-Foaming method, it is possible to ecologically create ceramic cellular sc...