X. Li Et Al. , "Microstructural evolution and strengthening mechanism of aligned steel fiber cement-based tail backfills exposed to electromagnetic induction," INTERNATIONAL JOURNAL OF MINERALS, METALLURGY AND MATERIALS , vol.31, no.11, pp.2390-2403, 2024
Li, X. Et Al. 2024. Microstructural evolution and strengthening mechanism of aligned steel fiber cement-based tail backfills exposed to electromagnetic induction. INTERNATIONAL JOURNAL OF MINERALS, METALLURGY AND MATERIALS , vol.31, no.11 , 2390-2403.
Li, X., Yılmaz, E., & Cao, S., (2024). Microstructural evolution and strengthening mechanism of aligned steel fiber cement-based tail backfills exposed to electromagnetic induction. INTERNATIONAL JOURNAL OF MINERALS, METALLURGY AND MATERIALS , vol.31, no.11, 2390-2403.
Li, Xihao, EROL YILMAZ, And Shuai Cao. "Microstructural evolution and strengthening mechanism of aligned steel fiber cement-based tail backfills exposed to electromagnetic induction," INTERNATIONAL JOURNAL OF MINERALS, METALLURGY AND MATERIALS , vol.31, no.11, 2390-2403, 2024
Li, Xihao Et Al. "Microstructural evolution and strengthening mechanism of aligned steel fiber cement-based tail backfills exposed to electromagnetic induction." INTERNATIONAL JOURNAL OF MINERALS, METALLURGY AND MATERIALS , vol.31, no.11, pp.2390-2403, 2024
Li, X. Yılmaz, E. And Cao, S. (2024) . "Microstructural evolution and strengthening mechanism of aligned steel fiber cement-based tail backfills exposed to electromagnetic induction." INTERNATIONAL JOURNAL OF MINERALS, METALLURGY AND MATERIALS , vol.31, no.11, pp.2390-2403.
@article{article, author={Xihao Li Et Al. }, title={Microstructural evolution and strengthening mechanism of aligned steel fiber cement-based tail backfills exposed to electromagnetic induction}, journal={INTERNATIONAL JOURNAL OF MINERALS, METALLURGY AND MATERIALS}, year=2024, pages={2390-2403} }