F. Dang, Y. Zhou, Z. Wang, Y. Li, P. Wang, C. Zhou | 2025 | Advances in Space Research
DOI 10.1016/j.asr.2024.09.030Review state
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This paper investigates the flash sintering of HUST-1 lunar regolith simulant, focusing on the effects of sintering temperature on microstructure and mechanical properties. The study reports compressive strength and density improvements with increasing temperature. This paper investigates the flash sintering of HUST-1 lunar regolith simulant, analyzing microstructural evolution, phase changes, and mechanical properties under varying temperatures. The study highlights the impact of sintering conditions on the final material characteristics. The provided text appears to be a series of URLs and file names related to academic or technical content, likely from a journal or research paper. The URLs point to image files (JPEG, GIF, etc.) with extensions like.sml and.sml, which might be thumbnails or small images. The text also includes references to specific file names such as 'gr1', 'gr2', etc., suggesting they are part of a larger document or set of figures. There is no clear main content or narrative, and the text seems to be a collection of file paths or links. The provided text contains a series of URLs and file names related to content hosted on a server, likely for academic or re
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flash sintering
thermal processing
sintering
thermal processing
Microstructural evolution
microstructural analysis
Phase analysis
phase characterization
Nanoindentation
mechanical testing
Compression test
mechanical testing
gr10
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gr11
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Microstructural evolution
observed under varying sintering temperatures
Phase analysis
revealed changes in material composition under different thermal conditions
Nanoindentation
measured mechanical properties at the nanoscale
Compression test
evaluated bulk mechanical behavior under load
gr1
thumbnail image
gr2
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gr3
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gr4
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