[1]
Sun J, Zhdaniuk V, He Y L, et al. Study on Application of Iron Tailings in Cement Stabilized Macadam[J]. Key Engineering Materials, 2023, 944: 231-246.
DOI: 10.4028/p-3et972
Google Scholar
[2]
Bai Runshan, Yan Pengliang, Zhang Huifang, et al. Application study of iron tailings in concrete [J]. Journal of Hebei Institute of Civil Engineering, 2015,33 (4) 1-4.
Google Scholar
[3]
Gu Xiaowei, Ai Yingying, Zhao Yunqi, et al. Current status of iron tailings resource utilization [J]. Chinese Journal of Nonferrous Metals, 2022,1-29.
Google Scholar
[4]
Lin Min, Wang Rui, Peng Liang. Experimental study on flow resistance and rheological parameters of full tailings slurry in Longqiao Iron Mine [J]. Mining Research and Development, 2021, 41 (9) 46-51.
Google Scholar
[5]
Li Litao, Yang Zhiqiang, Wang Zhonghong, et al. Full tail mortar flocculation and settlement characteristics of superfine iron Mine [J]. Mining Research and Development, 2017, 37 (3): 19-23.
Google Scholar
[6]
Tian Zhigang. Study on the properties of fine-grained tailings [J]. Mining Research and Development, 2020,40 (3): 76-81.
Google Scholar
[7]
Wen Zhenjiang, Gao Qian, Wang Yongding, et al. Correlation test between rheological characteristics of different concentrations and grading of mixed aggregate [J]. Journal of Northeastern University (Natural Science Edition), 2020,41 (5): 642-648.
Google Scholar
[8]
Behera S.K., Mishra D.P., Singh Prashant, Mishra K., Mandal Sujit K, Ghosh C.N., Kumar Ritesh, Mandal Phanil K. Utilization of mill tailings, fly ash and slag as mine paste backfill material: Review and future perspective [J].Construction and Building Materials, 2021, (309): 120-125.
DOI: 10.1016/j.conbuildmat.2021.125120
Google Scholar
[9]
Cao S, Song W D, Yilmaz E. Influence of structural factors on uniaxial compressive strength of cemented tailings backfill [J]. Construction and Building Materials, 2018,174 (6): 190-201.
DOI: 10.1016/j.conbuildmat.2018.04.126
Google Scholar
[10]
Qin Xinglang, Zheng Jieji, Huang Gang, etc. Experimental study on the rheological characteristics of Tongshan copper mine [J]. Mining Research and Development, 2020,40 (3): 102-106.
Google Scholar
[11]
Liu Shulong, Li Gongcheng, Liu Guolei, et al. Optimization of ratio of all solid waste gel material based on response surface method [J]. Silicate Bulletin, 2021,40 (1): 187-193.
Google Scholar
[12]
Li Xiaoguang, Chen Ting, Lu Pan. Study on the influence of iron tailings particle morphology on the dimensional stability of mortar [J]. Concrete and cement products, 2016 (09): 86-90.
Google Scholar
[13]
Nakkeeran G, Krishnaraj L, Bahrami A, et al.Machine learning application to predict the mechanical properties of glass fiber mortar[J].Adv. Eng. Softw. 2023, 180:103454.
DOI: 10.1016/j.advengsoft.2023.103454
Google Scholar
[14]
Nakkeeran G, Krishnaraj L, Bahrami A, et al. Machine learning application to predict the Mechanical properties of Glass Fiber mortar[J]. Advances in Engineering Software, 2023, 180: 103454.
DOI: 10.1016/j.advengsoft.2023.103454
Google Scholar
[15]
Ganasen N, Krishnaraj L, Onyelowe K C, et al. Soft computing techniques for predicting the properties of raw rice husk concrete bricks using regression-based machine learning approaches[J]. Scientific Reports, 2023, 13(1): 14503.
DOI: 10.1038/s41598-023-41848-1
Google Scholar
[16]
Priyan M V, Annadurai R, Alaneme G U, et al. A study on waste PCB fibres reinforced concrete with and without silica fume made from electronic waste[J]. Scientific Reports, 2023, 13(1): 22755.
DOI: 10.1038/s41598-023-50312-z
Google Scholar