The creation of concrete shells from customized prefabricated modules is a novel approach that facilitates the construction of free-form surfaces considerably. In the framework of the Adaptive Concrete Diamond Construction (ACDC) project at TU Dresden, a material for 3D printing of the outer contours of such modules has been developed based on the principles of Strain Hardening Cementitious Composite (SHCC). In addition to its high ductility, the required material must also be suitable for 3D printing while enabling the achievement of high geometric accuracy in the manufacture of the modules. To gain the required performance, cellulose ether and starch ether were used specifically to extend the open time, for a longer period of maintaining ...
3D concrete printing (3DCP) builds up objectives in a layer-atop-layer manner and has attracted much...
New additive manufacturing methods for cementitious materials hold a high potential to increase auto...
The research will focus on the technology of 3D printing fiber reinforced concrete looking for the r...
While interest in 3D printing of concrete (3DCP) and structures has been growing, a major obstacle f...
Strain hardening cementitious composites are a class of cementitious materials showing metal-like (i...
Cracking in concrete needs to be limited for esthetical and durability reasons. Currently, this is c...
Extrusion based additive manufacturing of cementitious materials has demonstrated strong potential t...
Extrusion based additive manufacturing of cementitious materials has demonstrated strong potential t...
Incorporating reinforcement into the practice of digital concrete construction, often called 3D-conc...
Since the advent of three-dimensional concrete printing (3DCP), several studies have shown the poten...
Strain hardening cementitious composites (SHCC) have been used in variety of structural applications...
Conventional construction of reinforced concrete structures is slow, labor-intensive, and expensive....
3D concrete printing (3DCP) builds up objectives in a layer-atop-layer manner and has attracted much...
New additive manufacturing methods for cementitious materials hold a high potential to increase auto...
The research will focus on the technology of 3D printing fiber reinforced concrete looking for the r...
While interest in 3D printing of concrete (3DCP) and structures has been growing, a major obstacle f...
Strain hardening cementitious composites are a class of cementitious materials showing metal-like (i...
Cracking in concrete needs to be limited for esthetical and durability reasons. Currently, this is c...
Extrusion based additive manufacturing of cementitious materials has demonstrated strong potential t...
Extrusion based additive manufacturing of cementitious materials has demonstrated strong potential t...
Incorporating reinforcement into the practice of digital concrete construction, often called 3D-conc...
Since the advent of three-dimensional concrete printing (3DCP), several studies have shown the poten...
Strain hardening cementitious composites (SHCC) have been used in variety of structural applications...
Conventional construction of reinforced concrete structures is slow, labor-intensive, and expensive....
3D concrete printing (3DCP) builds up objectives in a layer-atop-layer manner and has attracted much...
New additive manufacturing methods for cementitious materials hold a high potential to increase auto...
The research will focus on the technology of 3D printing fiber reinforced concrete looking for the r...