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A Study on the Effect of Low Calcium Ultra-fine Fly Ash as a Partial Sustainable Supplementary Material to Cement in Self-compacting Concrete被引量:2
《Journal of Wuhan University of Technology(Materials Science)》2023年第2期330-341,共12页Adapala Sunny Suprakash Karthiyaini S 
The aim and scope of the present study were to determine the efficacy of UFFA in evaluating the workability,static and dynamic stabilization properties,retention period,and slump loss of SCC systems in their fresh sta...
关键词:ultra fine fly ash self-compacting concrete WORKABILITY SEGREGATION compressive strength microstructure TGA 
Physico-chemical Characteristics of Wet-milled Ultrafine-granulated Phosphorus Slag as a Supplementary Cementitious Material被引量:4
《Journal of Wuhan University of Technology(Materials Science)》2018年第3期625-633,共9页贺行洋 YE Qing YANG Jin DAI Fei SU Ying WANG Yingbin Bohumír Strnadel 
Funded by National Natural Science Foundation of China(No.51372076);the Technology Innovation Major Project of Hubei Province(No.2017ACA178);the Science and Technology Support Program of Hubei Province(No.2015BCA244)
The phosphorus slag(PS) can be used as a supplementary cementitious material due to its potential hydrating activity. However, its usage has been limited by its adverse effects, including prolonged setting and lower...
关键词:wet-milling phosphorus slag ultrafine granulation setting time compressive strength 
The Properties and Applications of High-effective Mineral Admixture GRM for Concrete
《Journal of Wuhan University of Technology(Materials Science)》2001年第1期41-45,共5页何真 
Funded by the Science and Technology Commission of Hainan (No. 98008)
To utilize industrial residue as building materials is not only the demand for modern concrete technology but also the requirements for maintaining ecological balance and sustainable development. CRM, a new high-effec...
关键词:industrial residue supplementary cementitious material high performance concrete environment-friendly building material sustainable development 
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