Mechanical testing linked to Construction and infrastructure, with source literature and related extracted records kept visible.
100%
Confidence
8
Literature sources
25
Linked simulants
133
Linked properties
Measurement type
Mechanical testing
Application
Construction and infrastructure
Primary source
Experimental study on rheological properties and 3D printing of simulated lunar soil polymers
Review state
needs review
ter cement ratio of 0.30, 10 % NaOH, 8 % Na2SiO3, 6 % Ca(OH)2, and 0.10 % HPMC. Under these conditions, the 28-day compressive strength and flexural strength were 19.5 MPa and 6.9 MPa, respectively...
EN 1015-11: Methods of Test for Mortar for Masonry Part 11: Determination of Flexural and Compressive Strength of Hardened Mortar; ISO 14704: 2000: Fine Ceramics (Advanced Ceramics, Advanced Technical
Furthermore, Group 10 has the highest level of m SS /m VA ratio the second-highest level of m SH /m VA among Group 9 12 specimen cured at 60. The mechanical properties of Group 10 are the highest
.2.1 Compressive strength 3.2.2 Stress-strain relationship 3.2.3 Modulus of elasticity 3.2.4 Failure patterns 3.3 Flexure performance 3.3.1 Flexural strength 3.3.2 Load-deflection relationship 3.3....
from each particle size fraction. The samples were evaluated to determine the effect of particle size on appearance, length, mass, ultimate bending strength, elastic modulus, average thickness, por...
ity (~99.7%), highest thermal conductivity (2.65 W m 1 K 1 at 1073 K), and the best mechanical properties (compressive strength: 370.2 MPa, flexural strength: 81.4 MPa) were observed for the SPSed...
ompressive strength of the materials. During the assembly of modular building units, the mortise-tenon joints particularly rely on adequate flexural strength to ensure structural soundness. Conside...
: JSC-1A, BH-1, JLU-LRS, DNA-1, HIT-LRS-1; Additive: alkali activators curing under vacuum environment; compressive strength: 48.1 MPa; flexural Strength: 4.1 MPa; freeze-thaw resistant; anisotrop...
S. Zhou, X. Zhu, C. Lu, F. Li, G. Then | 2022 | Chinese Journal of Aeronautics
DOI 10.1016/j.cja.2020.06.014R. Shao, C. Wu, J. Li | 2025 | Journal of Materials Research and Technology
DOI 10.1016/j.jmrt.2025.03.047H. Fisher, J. Patzwald, T. Griemsmann, L. Overmeyer, E. Stoll | 2026 | Advances in Space Research
DOI 10.1016/j.asr.2026.05.036Y. Liu, X. Zhang, X. Chen, C. Wang, Y. Yu, Y. Jia, W. Yao | 2024 | Crystals
DOI 10.3390/cryst14121022S. Basel, C. Safety, C. Engineering | 2025 | Buildings
DOI 10.3390/buildings15142543W. Sun, F. Dang, L. Ding | 2025 | Additive Manufacturing Frontiers
DOI 10.1016/j.amf.2025.200225100%
8 sources