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由再生硅酸钙砖石制成的混凝土和砂浆的流变学、强度及耐久性

Rheology, Strength, and Durability of Concrete and Mortar Made of Recycled Calcium Silicate Masonry.

作者信息

Tuisk Tanel, Ilomets Simo, Hain Tiina, Kalbus Joosep, Kalamees Targo

机构信息

Department of Civil Engineering and Architecture, Tallinn University of Technology, Ehitajate Tee 5, 19086 Tallinn, Estonia.

出版信息

Materials (Basel). 2024 Jun 7;17(12):2790. doi: 10.3390/ma17122790.

Abstract

Selective demolition of building components and recycling construction demolition waste is a growing tendency as we move towards a circular construction. This study investigates the feasibility of using demolition waste from calcium silicate brick masonry as an aggregate in concrete and mortar. The purpose is to assess its impact on concrete and mortar properties, including compressive strength, durability, and workability. Silicate bricks from two demolished buildings were processed into aggregate, and laboratory experiments were conducted to evaluate concrete and mortar made with varying proportions of recycled aggregate. Results indicate that replacing natural aggregate (limestone rubble and sand) with recycled silicate brick aggregate up to 50% does not significantly compromise concrete performance, with no significant decrease in compressive strength observed. Frost resistance of the concrete made with recycled aggregate even surpasses that of reference concrete, possibly due to the lower density and higher (closed) porosity of the recycled aggregate. However, challenges such as increased water demand and loss of workability over time are noted with higher proportions of recycled aggregate. Further research is recommended to explore strategies for mitigating these challenges and to assess the effects of chemical admixtures on concrete properties. Overall, the findings suggest that recycled calcium silicate brick holds promise as a sustainable alternative for aggregate in concrete production.

摘要

随着我们迈向循环建筑,对建筑构件进行选择性拆除并回收建筑拆除废物的趋势日益增强。本研究探讨了将硅酸钙砖砌体拆除废物用作混凝土和砂浆骨料的可行性。目的是评估其对混凝土和砂浆性能的影响,包括抗压强度、耐久性和工作性。将两座拆除建筑中的硅酸盐砖加工成骨料,并进行实验室试验,以评估用不同比例再生骨料制成的混凝土和砂浆。结果表明,用再生硅酸盐砖骨料替代天然骨料(石灰石碎块和沙子)高达50%时,不会显著影响混凝土性能,抗压强度未见明显下降。用再生骨料制成的混凝土的抗冻性甚至超过了参考混凝土,这可能是由于再生骨料的密度较低且(封闭)孔隙率较高。然而,较高比例的再生骨料会导致需水量增加以及随着时间推移工作性损失等问题。建议进一步研究以探索缓解这些问题的策略,并评估化学外加剂对混凝土性能的影响。总体而言,研究结果表明,再生硅酸钙砖有望成为混凝土生产中骨料的可持续替代品。

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