Thermomechanical characterization linked to Glass and ceramic manufacturing, with source literature and related extracted records kept visible.
74%
Confidence
8
Literature sources
20
Linked simulants
99
Linked properties
Measurement type
Thermomechanical characterization
Application
Glass and ceramic manufacturing
Primary source
Effect of compaction pressure on the microstructural, mechanical, and thermal properties of microwave-sintered KLS-1 lunar regolith simulant
Review state
needs review
demonstrated increasing mechanical strength with increasing compaction pressure, with 7.5 MPa yielding the highest strength of 56 MPa. The coefficient of thermal expansion decreased with increasing...
ies of the phases. The plagioclase melting first and filling the intergranular pores as a molten liquid phase. The BH-1 LRS exhibited a low coefficient of thermal expansion (CTE) within the tempera...
ured by Archimedes density measurement via immersion in water. The C p was determined by a differential scanning calorimeter (DSC, PE). The coefficient of thermal expansion (CTE) was measured in th...
he obtained sintering graph, which displays the specimen area (px 2) and specimen temperature (C). The first one is tangent to the lineal thermal expansion of the curve and the second one, tangen...
The effect of heating rate 3.3 The effect of applied pressure 4 Thermal shock resistance 4.1 Residual strength 4.2 Thermal conductivity and CTE 4.3 Phase transition 4.4 No crack propagation 4.5 BET...
ignificant effect on the mineral composition in the temperature range of 1030 1080 C. Besides, the heat capacity, thermal conductivity, and coefficient of thermal expansion (CTE) of vacuum sintered...
rate for glass formation suggests that the simulant easily forms glass when melted and cooled at nominal rates between 50 and 55 C/min. The coefficient of thermal expansion of the glass measured by...
nificantly with increasing sintering temperature, with 1120 C giving the highest strength of 37.0 4.8 MPa. The sintered samples exhibited a coefficient of thermal expansion of approximately 5 10 6...
Y. Liu, X. Zhang, X. Chen, C. Wang, Y. Yu, Y. Jia, W. Yao | 2024 | Crystals
DOI 10.3390/cryst14121022J.-C. Ginés-Palomares, M. Fateri, T. Schubert, L. D. P. d’Ambelle, S. Simon, G. J. G. Gluth, J. Günster, A. Zocca | 2023 | Scientific Reports
DOI 10.1038/s41598-023-50391-yW. Han, Y. Zhou, F. Dang, C. Zhou, L. Ding | 2024 | Advances in Space Research
DOI 10.1016/j.asr.2023.11.027W. Han, Y. Zhou, L. Cai, C. Zhou, L. Ding | 2024 | International Journal of Mining Science and Technology
DOI 10.1016/j.ijmst.2024.06.004C. Ray, S. Reis, S. Sen, J. O'Dell | 2010 | Journal of Non-Crystalline Solids
DOI 10.1016/j.jnoncrysol.2010.04.049Y.-J. Kim, B. Ryu, H. Jin, J. Lee, H.-S. Shin | 2021 | Ceramics International
DOI 10.1016/j.ceramint.2021.06.09874%
8 sources