Difference between revisions of "Shared:Rhizome2References"

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=== '''References''' ===
 
=== '''References''' ===
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'''1.Printing with cement-less concrete'''
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Coppola et al, Binder Alternative to Portland Cement and waste management for sustainable construction, 2018 [https://pubmed.ncbi.nlm.nih.gov/29996741/]
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Dada, Influence of temperature on the rheological behaviour of eco-mortar, 2021
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[https://www.researchgate.net/publication/349412837_Influence_of_temperature_on_the_rheological_behaviour_of_eco-mortar_with_binary_and_ternary_cementitious_blends_of_natural_pozzolana_and_marble_powder]
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Schiavone et al, Pozzolan Based 3D Printing Composites From the Formulation, 2020
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[https://www.researchgate.net/publication/347958624_Pozzolan_Based_3D_Printing_Composites_From_the_Formulation_Till_the_Final_Application_in_the_Precision_Irrigation_Field]
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The Schumacher centre, Alternatives to Portland Cement
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[https://www.ctc-n.org/sites/www.ctc-n.org/files/resources/4f561ad5-a0a8-4210-adfb-4b030ae4f5bb.pdf]
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'''2.In Situ Printing and (AI & HRI supported) in situ assembly of 3D printed components'''
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'''3.(AI supported) Environment Control'''

Revision as of 07:53, 26 April 2023


Rhizome 2.0: Scaling-up Capability of Human-Robot Interaction Supported Approaches for Robotically 3D-printing Extraterrestrial Habitats


References

1.Printing with cement-less concrete

Coppola et al, Binder Alternative to Portland Cement and waste management for sustainable construction, 2018 [1]

Dada, Influence of temperature on the rheological behaviour of eco-mortar, 2021 [2]

Schiavone et al, Pozzolan Based 3D Printing Composites From the Formulation, 2020 [3]

The Schumacher centre, Alternatives to Portland Cement [4]


2.In Situ Printing and (AI & HRI supported) in situ assembly of 3D printed components


3.(AI supported) Environment Control