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再生保温混凝土性能分析及基于正交试验的最优配合比设计

Analysis of the Performance of Recycled Insulation Concrete and Optimal Mix Ratio Design Based on Orthogonal Testing.

作者信息

Deng Jun-Xi, Li Xiao, Li Xiao-Juan, Wei Tai-Bing

机构信息

College of Transportation and Civil Engineering, Fujian Agriculture and Forestry University, Fuzhou 350108, China.

Department of Civil Engineering and Architecture, Wuyi University, Wuyishan 354300, China.

出版信息

Materials (Basel). 2023 Aug 18;16(16):5688. doi: 10.3390/ma16165688.

Abstract

Construction and agricultural waste recycling have gained more and more attention recently as renewable resources. Straw and construction waste, both of which are widespread in northern Fujian, were investigated in this research. The orthogonal test was used to investigate the effects of recycled aggregate, straw, and glazed hollow beads on the mechanical and thermal properties of recycled insulation concrete. The influence of different factors on the macroscopic characteristics of recycled insulation concrete was examined using scanning electron microscopy (SEM). The optimal mix proportion for recycled insulation concrete that satisfies mechanical performance standards and provides superior insulation performance was then determined using the total efficacy coefficient method. According to the research findings, the heat conductivity of recycled insulation concrete decreases as its dried density decreases. A 100% recycled coarse aggregate replacement rate, 1% straw content, and 10% glazed hollow beads replacement rate are the optimal mix ratios for recycled insulation concrete. With a compressive strength of 20.98 MPa, a splitting tensile strength of 2.01 MPa, a thermal conductivity of 0.3776 W/(m·K), and a dry density of 1778.66 kg/m, recycled insulation concrete has the optimal mix ratio. Recycled insulation concrete is a novel form of eco-friendly, energy-saving concrete that aims to achieve low-carbon energy savings and sustainable development by combining resource recycling with building energy savings to realize the recycling of solid waste resources, which has significant environmental, social, and economic benefits and broad market application potential.

摘要

建筑和农业废弃物回收作为可再生资源最近越来越受到关注。本研究对闽北地区广泛存在的秸秆和建筑废弃物进行了调查。采用正交试验研究了再生骨料、秸秆和玻化微珠对再生保温混凝土力学性能和热性能的影响。利用扫描电子显微镜(SEM)研究了不同因素对再生保温混凝土宏观特性的影响。然后采用总功效系数法确定了满足力学性能标准并具有优异保温性能的再生保温混凝土的最佳配合比。研究结果表明,再生保温混凝土的导热系数随干密度的降低而降低。再生保温混凝土的最佳配合比为100%再生粗骨料替代率、1%秸秆含量和10%玻化微珠替代率。再生保温混凝土的最佳配合比为抗压强度20.98MPa、劈裂抗拉强度2.01MPa、导热系数0.3776W/(m·K)、干密度1778.66kg/m。再生保温混凝土是一种新型的生态友好型节能混凝土,旨在通过资源回收与建筑节能相结合实现固体废物资源的循环利用,从而实现低碳节能和可持续发展,具有显著的环境、社会和经济效益以及广阔的市场应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c218/10456967/1bcb03c1393f/materials-16-05688-g001.jpg

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