The so-called Freeze Foaming method aims at manufacturing ceramic cellular scaffolds for diverse applications. One application is dedicated to potential bone replacement material featuring open, micro and interconnected porosity. However, the main challenges of this foaming method is to achieve a homogeneous pore morphology. In a current project, the authors throw light on the bubble/pore and strut formation of this process by in situ computed tomography. This allows for evaluating varying process parameter’s effects on the growth of the ceramic foam during the foaming process. As first result and basis for CT analysis, a stable and reproducible model suspension was developed which resulted in reproducible foam structures. In dependence of ...
The mechanical properties of Advanced Pore Morphology (APM) foam elements depend strongly upon their...
Alumina ceramics were freeze-cast from water- and camphene-based slurries under varying freezing con...
We describe a three-dimensional imaging and analysis study of eight industrial cellular foam morphol...
Using the so-called Freeze-Foaming method, it is possible to ecologically create ceramic cellular sc...
Using the so-called Freeze-Foaming method, it is possible to ecologically create ceramic cellular sc...
Freeze Foaming is a direct foaming method that aims at manufacturing ceramic cellular scaffolds for ...
The objective of the presented work is a detailed investigation of the so-called Freeze Foaming proc...
With a novel Freeze Foaming method, it is possible to manufacture porous cellular components whose s...
With a novel Freeze Foaming method, it is possible to manufacture porous cellular components whose s...
To facilitate the design and development of porous metals, simulation of their mechanical behavior i...
Bulk alumina foams were generated by slip casting of suspensions combined with particle-stabilized e...
Abstract — X-Ray Computed Tomography (CT) scanning is an effective method for estimating the porosit...
In tissue engineering, porous scaffolds are often used as three-dimensional (3D) supports for tissue...
peer reviewedBulk alumina foams were generated by slip casting of suspensions combined with particle...
Refractories are a key component for cost effective and energetic sustainable processes. Depending o...
The mechanical properties of Advanced Pore Morphology (APM) foam elements depend strongly upon their...
Alumina ceramics were freeze-cast from water- and camphene-based slurries under varying freezing con...
We describe a three-dimensional imaging and analysis study of eight industrial cellular foam morphol...
Using the so-called Freeze-Foaming method, it is possible to ecologically create ceramic cellular sc...
Using the so-called Freeze-Foaming method, it is possible to ecologically create ceramic cellular sc...
Freeze Foaming is a direct foaming method that aims at manufacturing ceramic cellular scaffolds for ...
The objective of the presented work is a detailed investigation of the so-called Freeze Foaming proc...
With a novel Freeze Foaming method, it is possible to manufacture porous cellular components whose s...
With a novel Freeze Foaming method, it is possible to manufacture porous cellular components whose s...
To facilitate the design and development of porous metals, simulation of their mechanical behavior i...
Bulk alumina foams were generated by slip casting of suspensions combined with particle-stabilized e...
Abstract — X-Ray Computed Tomography (CT) scanning is an effective method for estimating the porosit...
In tissue engineering, porous scaffolds are often used as three-dimensional (3D) supports for tissue...
peer reviewedBulk alumina foams were generated by slip casting of suspensions combined with particle...
Refractories are a key component for cost effective and energetic sustainable processes. Depending o...
The mechanical properties of Advanced Pore Morphology (APM) foam elements depend strongly upon their...
Alumina ceramics were freeze-cast from water- and camphene-based slurries under varying freezing con...
We describe a three-dimensional imaging and analysis study of eight industrial cellular foam morphol...