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不同养护条件下钛渣制备超高性能混凝土的力学及干燥收缩性能研究

Mechanical and Drying Shrinkage Performance Study of Ultra-High-Performance Concrete Prepared from Titanium Slag under Different Curing Conditions.

作者信息

Wang Jinxin, Li Jun, Gao Yan, Lu Zhongyuan, Hou Li

机构信息

State Key Laboratory of Environment-Friendly Energy Materials, School of Materials and Chemistry, Southwest University of Science and Technology, Mianyang 621010, China.

Department of Materials Engineering, Sichuan College of Architectural Technology, Deyang 618000, China.

出版信息

Materials (Basel). 2024 Aug 25;17(17):4201. doi: 10.3390/ma17174201.

Abstract

This research investigates the effects of various curing regimes, the incorporation of titanium slag, and the utilization of quartz sand on the strength properties and shrinkage behavior of ultra-high-performance concrete (UHPC). By using low-heat silicate cement to prepare UHPC, this study conducted standard curing and steam curing, and comprehensively analyzed the macro and micro performance of UHPC under different curing conditions. The findings indicate that the application of steam curing markedly enhances the mechanical attributes of UHPC while efficiently decreasing its drying shrinkage. In the comparative tests, we found that the compressive strength of concrete that had undergone 2 days of steam curing was 9.15% higher than that of concrete cured for 28 days under standard conditions. In addition, under the same curing conditions, titanium slag sand had higher mechanical properties than quartz sand. Under standard curing conditions, the 28-day compressive strength of UHPC using titaniferous slag aggregate was 12.64% higher than that of UHPC using standard sand. Through the data analysis of XRD, TG, and MIP, we found that the content of Ca(OH) in the hydration products after steam curing was reduced compared to the standard curing conditions, and the pore structure had been optimized. The UHPC prepared with titanium slag sand has greater advantages in mechanical properties and drying shrinkage, and has a smaller pore structure than the UHPC prepared with quartz sand. Moreover, the use of titanium slag sand offers ecological and economic benefits, making it a more sustainable and cost-effective option for high-performance construction applications.

摘要

本研究调查了不同养护制度、钛渣掺入量以及石英砂的使用对超高性能混凝土(UHPC)强度性能和收缩行为的影响。通过使用低热硅酸盐水泥制备UHPC,本研究进行了标准养护和蒸汽养护,并全面分析了不同养护条件下UHPC的宏观和微观性能。研究结果表明,蒸汽养护的应用显著提高了UHPC的力学性能,同时有效降低了其干燥收缩。在对比试验中,我们发现经过2天蒸汽养护的混凝土抗压强度比在标准条件下养护28天的混凝土高9.15%。此外,在相同养护条件下,钛渣砂的力学性能高于石英砂。在标准养护条件下,使用含钛矿渣骨料的UHPC的28天抗压强度比使用标准砂的UHPC高12.64%。通过XRD、TG和MIP的数据分析,我们发现与标准养护条件相比,蒸汽养护后水化产物中Ca(OH)的含量降低,孔隙结构得到了优化。用钛渣砂制备的UHPC在力学性能和干燥收缩方面具有更大优势,且孔隙结构比用石英砂制备的UHPC更小。此外,使用钛渣砂具有生态和经济效益,使其成为高性能建筑应用中更具可持续性和成本效益的选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bdcf/11396240/ed6177dde71c/materials-17-04201-g001.jpg

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