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第3期
Regulation of Pore Structure and High-temperature Fracture Behavior of CAC-bonded Alumina-Spinel Castables Based on Hydration Design
作者:Wenjing LIU1 , Ning LIAO1, 2, 3*, Yawei LI1, 2, 3
作者機(jī)構(gòu):1 The State Key Laboratory of Refractories and Metallurgy, Wuhan University of Science and Technology, Wuhan 430081, China 2 National-provincial Joint Engineering Research Center of High Temperature Materials and Lining Technology, Wuhan 430081, China 3 Joint International Research Laboratory of Refractories and Metallurgy, Wuhan University of Science and Technology, Wuhan 430081, China
分類號:
卷號:
期號 : 2024 年, 第3期
頁碼:22 - 29
內(nèi)容簡介

The lamellar hydrates of CAC were designed with the introduction of nano CaCO3 or Mg-Al hydrotalcite (M-A-H), and the effects on the green strength, pore structures, and high-temperature fracture behavior of alumina-spinel castables were investigated. The results show that nano CaCO3 or M-A-H stimulates rapidly the hydration of CAC and the formation of lamellar C4AcH11 or coexistence of C2AH8 and C4AcH11 at 25 °C. The formation of lamellar hydrates can contribute to a more complicated pore structure, especially in the range of 400-2 000 nm. Meanwhile, the incorporation of well-distributed CaO or MgO sources from nano CaCO3 or M-A-H also regulates the distribution of CA6 and spinel (pre-formed and in-situ). Consequently, the optimized microstructure and complicated pore structure can induce the deflection and bridging of cracks, thus facilitating the consumption of fracture energy and enhancing the resistance to thermal stress damage. 

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