Design, Preparation, and Performance of a Gradient Structural Concrete Member

Xiaodong Wen, Dong-yuan Hu, Zhenyong Zhang, L. Zhao
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Abstract

The design of a gradient structural concrete component was investigated to improve the durability of concrete structures under harsh environments. On the basis of the theory of functionally graded materials with high crack resistance, low transmission, and good self-repairing capability of the cement-based material without a mesoscopic interface transition zone, the reinforcement on performance of protective layer could be achieved. Given the differences in construction situation, structural shape, inner, and outer layer among materials, the gradient structural concrete member (GSCM) and general single-layer concrete member would be prepared. The Deformation coordination capacity, chloride transport properties, and preparation method were investigated, through simulation of stress and deformation, interface bond strength test, and accelerated corrosion test. Results showed that the consistent volume deformation of GSCM did not cause failure, and the surface layer strength of GSCM improved by up to 30%. Only 0.02-0.05 mm cracks were observed without the aid of instruments, and 0.2-0.5 mm cracks were observed in general single-layer members. Moreover, the GSCM had a depth of penetration and chloride diffusion coefficient of 0mm and 6.3×10-13m2/s, respectively. These values indicated that the GSCM exhibited good tricyclic assemble performance and satisfied the construction requirement. Meanwhile, the values obtained for the general single components were 15mm and 12.8×10-13 m2/s.
梯度结构混凝土构件的设计、制备和性能
为提高混凝土结构在恶劣环境下的耐久性,研究了梯度结构混凝土构件的设计。基于不存在介观界面过渡区的水泥基材料具有高抗裂性、低透射性和良好自修复能力的功能梯度材料理论,可以实现对保护层性能的增强。考虑到不同材料在施工情况、结构形状、内外层等方面的差异,将制备梯度结构混凝土构件(GSCM)和一般单层混凝土构件。通过模拟应力变形、界面结合强度试验和加速腐蚀试验,研究了复合材料的变形协调能力、氯离子输运性能和制备方法。结果表明,GSCM的一致体积变形不会导致破坏,其表层强度提高了30%以上。在没有仪器的情况下,仅观察到0.02 ~ 0.05 mm的裂纹,而一般单层构件的裂纹为0.2 ~ 0.5 mm。GSCM的穿透深度为0mm,氯离子扩散系数为6.3×10-13m2/s。结果表明,GSCM具有良好的三环装配性能,满足结构要求。一般单组分得到的值为15mm, 12.8×10-13 m2/s。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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