To reduce transportation costs for building a lunar base station, it is important to utilise in-situ resources like lunar regolith. Lunar regolith can be used to create a concrete-like material by means of geopolymerization. For application of geopolymerizing mixtures, the rheology of the slurry must be known in advance. This article investigates the rheology of mixtures of lunar dust simulants with water, NaOH (as alkaline agent) and urea (as superplasticizer). The rheology of all the mixtures can be approximated with the Bingham Model. Aging has a dramatic effect on the rheology of the water + simulant mixture and, after 2 days, the yield stress decreases by six times. The presence of NaOH, on the contrary, increases both the apparent vis...
The European Astronaut Centre (EAC) is currently constructing the European Lunar Exploration Laborat...
Lunar and Martian regoliths are similar to terrestrial soils in that they appear granular but are ex...
Abstract Sophisticated manned and unmanned lunar missions are being developed by international colla...
To reduce transportation costs for building a lunar base station, it is important to utilise in-situ...
3D-printing of geopolymers produced from lunar regolith is an interesting option for space in situ h...
NASA has revealed that they plan to resume manned missions and ensure the permanent presence of peop...
When developing materials for lunar construction, it is essential to minimize the weight of componen...
The return to the Moon is an important short-term goal of NASA and other international space agencie...
Lunar exploration requires studies using standardized testing procedures. Previous lunar simulants f...
This work discusses the geopolymerization of lunar dust simulant JSC LUNAR-1A and Martian dust simul...
AbstractThe accuracy of lunar regolith simulants for lunar drilling and sampling is mainly based on ...
There are still many gaps in improving the fidelity of lunar regolith simulants to simulate more pro...
There is a need for a stable, efficient, and cost-effective option of a terrestrial lunar regolith s...
With an increase in deep space exploration, many programs are looking to create infrastructure using...
The potential of utilizing lunar regolith as the raw material for manufacturing structural members i...
The European Astronaut Centre (EAC) is currently constructing the European Lunar Exploration Laborat...
Lunar and Martian regoliths are similar to terrestrial soils in that they appear granular but are ex...
Abstract Sophisticated manned and unmanned lunar missions are being developed by international colla...
To reduce transportation costs for building a lunar base station, it is important to utilise in-situ...
3D-printing of geopolymers produced from lunar regolith is an interesting option for space in situ h...
NASA has revealed that they plan to resume manned missions and ensure the permanent presence of peop...
When developing materials for lunar construction, it is essential to minimize the weight of componen...
The return to the Moon is an important short-term goal of NASA and other international space agencie...
Lunar exploration requires studies using standardized testing procedures. Previous lunar simulants f...
This work discusses the geopolymerization of lunar dust simulant JSC LUNAR-1A and Martian dust simul...
AbstractThe accuracy of lunar regolith simulants for lunar drilling and sampling is mainly based on ...
There are still many gaps in improving the fidelity of lunar regolith simulants to simulate more pro...
There is a need for a stable, efficient, and cost-effective option of a terrestrial lunar regolith s...
With an increase in deep space exploration, many programs are looking to create infrastructure using...
The potential of utilizing lunar regolith as the raw material for manufacturing structural members i...
The European Astronaut Centre (EAC) is currently constructing the European Lunar Exploration Laborat...
Lunar and Martian regoliths are similar to terrestrial soils in that they appear granular but are ex...
Abstract Sophisticated manned and unmanned lunar missions are being developed by international colla...