The microstructure of porous materials has a significant effect on their transport properties. Engineered cellular ceramics can be designed to exhibit properties at will, thanks to the advances in additive manufacturing. We investigated the heat and mass transport characteristics of SiSiC lattices produced by three-dimensional (3D) printing and replication, with three different morphologies: rotated cube (RC), Weaire-Phelan (WPh), and tetrakaidecahedron (TK) lattices, and a commercially available ceramic foam. The pressure gradients were measured experimentally for various velocities. The convective heat transfer coefficients were determined through a steady-state experimental technique in combination with numerical analysis. The numerical ...
The present study is focused on the application of a ceramic tubular high temperature heat exchanger...
[EN] The improvement of heat dissipation in electronic and energy devices is a challenge that can be...
Conductive metallic Periodic Open Cellular Structures (POCS) are considered a promising solution for...
The lattice structure is promising for the application as heat exchange media due to its porous and ...
In this work, we report the design of ceramic lattices produced via additive manufacturing (AM) used...
Additive manufacturing allows the fabrication of complex geometries with enhanced performances, maki...
Tailoring the architectural characteristics of lattice materials at different length scales, from na...
In the applications of metal foams, the knowledge of the thermal transport properties is of primary ...
Forced convection heat transfer in four structured porous materials produced by selective laser melt...
The emergence of metal Additive Manufacturing (AM) over the last two decades has opened venues to mi...
This paper presents experimental and numerical studies of the pressure drop in ceramic foams for sol...
This study experimentally investigated complex heat sink designs fabricated by Selective Laser Melti...
The energy performance of buildings is a key point to achieve the sustainability goals of the modern...
Open cell foams are considered promising catalytic substrates providing high surface area and a tort...
The present study is focused on the application of a ceramic tubular high temperature heat exchanger...
[EN] The improvement of heat dissipation in electronic and energy devices is a challenge that can be...
Conductive metallic Periodic Open Cellular Structures (POCS) are considered a promising solution for...
The lattice structure is promising for the application as heat exchange media due to its porous and ...
In this work, we report the design of ceramic lattices produced via additive manufacturing (AM) used...
Additive manufacturing allows the fabrication of complex geometries with enhanced performances, maki...
Tailoring the architectural characteristics of lattice materials at different length scales, from na...
In the applications of metal foams, the knowledge of the thermal transport properties is of primary ...
Forced convection heat transfer in four structured porous materials produced by selective laser melt...
The emergence of metal Additive Manufacturing (AM) over the last two decades has opened venues to mi...
This paper presents experimental and numerical studies of the pressure drop in ceramic foams for sol...
This study experimentally investigated complex heat sink designs fabricated by Selective Laser Melti...
The energy performance of buildings is a key point to achieve the sustainability goals of the modern...
Open cell foams are considered promising catalytic substrates providing high surface area and a tort...
The present study is focused on the application of a ceramic tubular high temperature heat exchanger...
[EN] The improvement of heat dissipation in electronic and energy devices is a challenge that can be...
Conductive metallic Periodic Open Cellular Structures (POCS) are considered a promising solution for...