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BULLETIN OF THE CHINESE CERAMIC SOCIETY ›› 2026, Vol. 45 ›› Issue (1): 191-201.DOI: 10.16552/j.cnki.issn1001-1625.2025.0647

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Preparation and Formation Mechanism of Ultra-Early Strength Environmental-Friendly Steel Slag Micro Powder UHPC

TANG Xianyuan1,2,3(), REN Bowen1,2,3(), HU Bingqian1,2,3, LIU Dacheng1,2,3, FENG Meijie1,3   

  1. 1. School of Architecture and Transportation Engineering,Guilin University of Electronic Technology,Guilin 541004,China
    2. Nanning Research Institute,Guilin University of Electronic Technology,Nanning 530033,China
    3. The key laboratory of Intelligent Transportation in Guangxi,Guilin 541004,China
  • Received:2025-07-03 Revised:2025-08-27 Online:2026-01-20 Published:2026-02-10

Abstract:

To enhance the rapid repair capability of concrete pavements after damage and strengthen the reuse of solid waste resources, based on the previously developed environmental-friendly steel slag micro powder ultra-high performance concrete (UHPC), nine groups of ultra-early strength steel slag micro powder UHPC were prepared using an orthogonal experimental design. The influencing factors included the replacement rate of ordinary Portland cement (OPC) for sulphoaluminate cement (SAC), the content of early-strength agent lithium carbonate, the content of steel fiber, and the content of setting regulator borax. By testing initial setting time, compressive strength, and flexural strength at different ages, the influence patterns of each factor were analyzed, and the optimal mix ratio of ultra-early strength UHPC was determined. Additionally, field emission scanning electron microscopy (SEM) and X-ray diffractometer (XRD) were used to characterize the micro-morphology and phase composition of ultra-early strength UHPC at various ages. The results show that with the increase of OPC replacement rate, the setting time of UHPC decreases first and then increases, and the mechanical properties show a downward trend. The excessively rapid early hydration reaction of the SAC-OPC system leads to incomplete hydration, resulting in lower later-age compressive strength compare to the reference group. At a low OPC replacement rate, the SAC-OPC system UHPC prepared from steel slag micro powder still has relatively low alkalinity. Ettringite(AFt) is present in the hydration products, but calcium hydroxide(CH) is not observed. Moreover, the content of AFt gradually decreases with increasing OPC replacement rate. As hydration reaction proceeds, the pores, voids, and cracks in the matrix of ultra-early strength UHPC gradually reduce, and the structure tends to be dense. Based on the analysis of the influences of various factors on the mechanical properties and construction performance of SAC-OPC system concrete, the ultra-early strength environmental-friendly steel slag micro powder UHPC with initial setting time of 30 min and compressive strength and flexural strength of 39.6 and 11.2 MPa for 3 h under conventional curing conditions is prepared.

Key words: ultra-high performance concrete, steel slag micro powder, SAC-OPC system, ultra-early strength, mechanical property, formation mechanism

CLC Number: