mechanical testing linked to Construction and infrastructure, with source literature and related extracted records kept visible.
100%
Confidence
7
Literature sources
17
Linked simulants
135
Linked properties
Measurement type
mechanical testing
Application
Construction and infrastructure
Primary source
Protection of lunar structures from micrometeoroid strikes: Behaviour of panels derived from lunar regolith simulant
Review state
needs review
The average tensile strength was tested at 38 MPa, foll
ed as the main process parameters affecting fiber diameter and temperature. The thermal treatment at 875 C for 15 min resulted in a maximum tensile strength of 301.57 MPa for the lunar regolith sim...
ted for a more detailed study of mechanical properties. The results showed that compressive strength of sintered sample is much higher than tensile strength. This study reveals the effects of sinte...
The test method is stress controlled and the post peak behavior cannot be observed to identify the elastic plastic behavior of JSC-1 simulant.
tensile strengths of polymer-bonded specimens are shown in Fig. 8, as a function of the porosity-binder ratio, nb.
license. Article Strength Evolution of Lunar Highland Regolith Simulant LHS-1E with Moisture Content: Insights from Compressive, Shear, and Indirect Tensile Tests Gal-Erdene Battsengel 1, *, Noune...
t reduces toughness, requiring high extrusion temper- atures (e.g., 235 C for ABS) [ 56 ] or pressure-optimized interfaces (e.g., 36.2 MPa tensile strength for nylon) [ 57 ]. The PEEK regolith comp...
W. Han, Y. Zhou, L. Cai, C. Zhou, L. Ding | 2024 | International Journal of Mining Science and Technology
DOI 10.1016/j.ijmst.2024.06.004H. Arslan, S. Sture, S. Batiste | 2008 | Materials Science and Engineering: A
DOI 10.1016/j.msea.2007.05.113R. A. Zina, T. Grippi, J. R. Valdes | 2025 | Advances in Space Research
DOI 10.1016/j.asr.2025.01.042G.-E. Battsengel, N. Melkoumian, D. Harvey, R. Akmeliawati | 2026 | Geosciences
DOI 10.3390/geosciences16060219W. Sun, F. Dang, L. Ding | 2025 | Additive Manufacturing Frontiers
DOI 10.1016/j.amf.2025.200225100%
7 sources