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一种基于仿生碳酸盐沉淀的砂浆剪切行为简化模型。

A Simplified Model for Shear Behavior of Mortar Using Biomimetic Carbonate Precipitation.

作者信息

Diao Yu, Bai Jitao, Sun Changyou, Huang Jianyou, Yang Chao, Hu Qingsong

机构信息

School of Civil Engineering, Tianjin University, Tianjin 300072, China.

3rd Construction Co., Ltd. of China Construction 5th Engineering Bureau, Changsha 410021, China.

出版信息

Materials (Basel). 2023 Aug 13;16(16):5613. doi: 10.3390/ma16165613.

Abstract

As a common molecule in biomineralization, L-aspartic acid (L-Asp) has been proven to be able to induce in vitro CaCO precipitation, but its application in sand reinforcement has never been studied. In this study, L-Asp was employed in sand reinforcement for the first time through the newly developed biomimetic carbonate precipitation (BCP) technique. Specimens with different number of BCP spray cycles were prepared, and a series of direct shear tests were conducted to investigate the impact of spray number on shear strength, critical displacement, and residual strength. Then a simplified power model for shear stress-displacement behavior was established and calibrated with the measured data. The results show that BCP can significantly improve the shear strength of sand. As the number of spray cycles increases, both the shear strength and residual strength increase, while the critical displacement decreases. Such variations can be described with two sigmoid models and a linear model, respectively. The simplified power model performs well in most cases, especially at higher spray numbers. This study is expected to provide a practical model for the shear behavior of BCP-treated mortar.

摘要

作为生物矿化过程中的一种常见分子,L-天冬氨酸(L-Asp)已被证明能够在体外诱导碳酸钙沉淀,但其在砂土加固中的应用尚未得到研究。在本研究中,首次通过新开发的仿生碳酸盐沉淀(BCP)技术将L-天冬氨酸用于砂土加固。制备了具有不同BCP喷洒次数的试样,并进行了一系列直接剪切试验,以研究喷洒次数对剪切强度、临界位移和残余强度的影响。然后建立了剪切应力-位移行为的简化幂模型,并用实测数据进行了校准。结果表明,BCP能显著提高砂土的剪切强度。随着喷洒次数的增加,剪切强度和残余强度均增加,而临界位移减小。这些变化分别可用两个S型模型和一个线性模型来描述。简化幂模型在大多数情况下表现良好,尤其是在喷洒次数较多时。本研究有望为BCP处理砂浆的剪切行为提供一个实用模型。

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