Additive manufacturing has been a promising technique for producing sophisticated porous structures. The pore's architecture and infill density percentage can be easily controlled through additive manufacturing methods. This paper reports on development of sandwich-shape extruded cross sections with various architecture. These lightweight structures were prepared by employing additive manufacturing technology. In this study, three types of cross-sections with the same 2-D porosity were generated using particular techniques. a) The regular cross section of hexagonal honeycomb, b) The heterogeneous pore distribution of closed cell aluminum foam cross section obtained from image processing and c) linearly patterned topology optimized 2-D unit ...
Additive manufacturing of industrially-relevant high-performance parts and products is today a reali...
AbstractAs reported before, the Lightweight design department of the Fraunhofer Institute IWU is col...
This study proposes an innovative design solution based on the design for additive manufacturing (Df...
Cellular materials, such as foams, can be used as load bearing members in civil construction and as ...
The demand for shorter product development time has resulted in the introduction of a new paradigm c...
the demand for shorter product development time has resulted in the introduction of a new paradigm c...
Cellular structures are promising candidates for additive manufacturing to design lightweight and c...
Abstract In nature, mesoscopic or microscopic cellular structures like trabecular bone, wood, shell,...
The aim of this work is to evaluate the mechanical properties and failure analysis of cellular core ...
Additive manufacturing (AM) methods have a growing application in different fields such as aeronaut...
This paper analyzes the effect of thin and thick walls on functional properties of 3D printed cell ...
One of the main advantages of Additive Manufacturing (AM) is the ability to produce topologically op...
Biomedical scaffolds with a high degree of porosity are known to facilitate the growth of healthy fu...
Highly organized, porous architectures leverage the true potential of additive manufacturing (AM) as...
As reported during the last years the Lightweight design department of the Fraunhofer-IWU is collabo...
Additive manufacturing of industrially-relevant high-performance parts and products is today a reali...
AbstractAs reported before, the Lightweight design department of the Fraunhofer Institute IWU is col...
This study proposes an innovative design solution based on the design for additive manufacturing (Df...
Cellular materials, such as foams, can be used as load bearing members in civil construction and as ...
The demand for shorter product development time has resulted in the introduction of a new paradigm c...
the demand for shorter product development time has resulted in the introduction of a new paradigm c...
Cellular structures are promising candidates for additive manufacturing to design lightweight and c...
Abstract In nature, mesoscopic or microscopic cellular structures like trabecular bone, wood, shell,...
The aim of this work is to evaluate the mechanical properties and failure analysis of cellular core ...
Additive manufacturing (AM) methods have a growing application in different fields such as aeronaut...
This paper analyzes the effect of thin and thick walls on functional properties of 3D printed cell ...
One of the main advantages of Additive Manufacturing (AM) is the ability to produce topologically op...
Biomedical scaffolds with a high degree of porosity are known to facilitate the growth of healthy fu...
Highly organized, porous architectures leverage the true potential of additive manufacturing (AM) as...
As reported during the last years the Lightweight design department of the Fraunhofer-IWU is collabo...
Additive manufacturing of industrially-relevant high-performance parts and products is today a reali...
AbstractAs reported before, the Lightweight design department of the Fraunhofer Institute IWU is col...
This study proposes an innovative design solution based on the design for additive manufacturing (Df...