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养护温度对含石英粉和钢纤维的高强度偏高岭土基地质聚合物复合材料(HMGC)的影响

Effect of Curing Temperature on High-Strength Metakaolin-Based Geopolymer Composite (HMGC) with Quartz Powder and Steel Fibers.

作者信息

Li Qiang, Chen Shikun, Zhang Yajun, Hu Yunjin, Wang Quanlin, Zhou Quan, Yan Yongmao, Liu Yi, Yan Dongming

机构信息

Key Laboratory for Technology in Rural Water Management of Zhejiang Province, Zhejiang University of Water Resources and Electric Power, Hangzhou 310018, China.

College of Civil Engineering and Architecture, Zhejiang University, Hangzhou 310058, China.

出版信息

Materials (Basel). 2022 Jun 2;15(11):3958. doi: 10.3390/ma15113958.

Abstract

Geopolymer is a new type of synthesized aluminosilicate material. Compared with ordinary Portland cement, it has better fire resistance and durability, and is more environmentally friendly. In this paper, a high-strength metakaolin-based geopolymer composite (HMGC) has been developed by utilizing quartz powder and steel fibers. The optimization compositions and effect of curing temperatures (from ambient temperature to 90 °C) on the strength performance of the HMGC is studied. The optimized 1-day compressive strength of the HMGC can reach 80 MPa, and the 3-day compressive strength is close to 100 MPa (97.49 MPa). Combined with XRD, FTIR, SEM and MIP characterization, the mechanisms behind the strength development under different curing temperatures are analyzed. The results show that heat curing can significantly speed up the process of geopolymerization and increase the early strength of the HMGC. However, long-term heat curing under high temperature (such as 90 °C, 7 days) would reduce the mechanical strength of the HMGC. Prolonged high-temperature curing increases the pores and micro-defects in the gel phase of the HMGC, which may be attributed to chemical shrinkage. Thus, the curing temperature should be carefully controlled to make a HMGC with better performance.

摘要

地质聚合物是一种新型的合成铝硅酸盐材料。与普通硅酸盐水泥相比,它具有更好的耐火性和耐久性,且更环保。本文利用石英粉和钢纤维开发了一种高强度偏高岭土基地质聚合物复合材料(HMGC)。研究了HMGC的优化组成以及养护温度(从环境温度到90°C)对其强度性能的影响。HMGC优化后的1天抗压强度可达80MPa,3天抗压强度接近100MPa(97.49MPa)。结合XRD、FTIR、SEM和MIP表征,分析了不同养护温度下强度发展的背后机制。结果表明,热养护可显著加速地质聚合过程并提高HMGC的早期强度。然而,高温下长期热养护(如90°C,7天)会降低HMGC的机械强度。长时间高温养护会增加HMGC凝胶相中的孔隙和微缺陷,这可能归因于化学收缩。因此,应仔细控制养护温度以制备性能更好的HMGC。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c485/9182071/6d59d1809458/materials-15-03958-g001.jpg

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