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基于密度-形态耦合的沙漠砂与砒砂岩陶砂复配砂浆流变性能预测

Prediction of the rheological properties of mortar compounded with desert sand and Pisha sandstone ceramic sand based on density-form coupling.

作者信息

Zhao Xiaoze, Li Xiaoli, Xie Weidong

机构信息

College of Water Conservancy and Civil Engineering, Inner Mongolia Agricultural University, Hohhot, 010018, China.

Inner Mongolia Autonomous Region Water Resources Department, Hohhot, China.

出版信息

Sci Rep. 2024 Dec 5;14(1):30382. doi: 10.1038/s41598-024-82240-x.

Abstract

Ordos, China has a large amount of environmentally hazardous Pisha sandstone and desert sand. Pisha sandstone ceramic sand and desert sand can be compounded to prepare light and fine aggregates, which are often used in construction mortar. However, it is unknown how the density and particle shapes of light and fine aggregates affect their rheological properties. In this study, we establish a predictive model for the rheological properties of light and fine aggregate mortar, using the Krieger-Dougherty and Chateau-Ovarlez-Trung models as a basis. First, density and particle morphology parameters are introduced and modified for light and fine aggregate mortars. Then, the morphological parameters of different types of fine aggregate particles were measured using image analysis techniques. This showed that the roundness of the particles decreases with decreasing density, and both the roughness and the aspect ratio increase. A regression model between the particle morphology parameters and characteristic viscosity was accordingly developed. The rheological properties of different types of mortars were examined. We find that as the particle density decreases, the yield stress and plastic viscosity decrease continuously, showing shear thickening behavior. Based on the coupled density-form effect, a modified Krieger-Dougherty model and Chateau-Ovarlez-Trung model are proposed. These proposed models result in more accurate predictions of plastic viscosity and yield stress for light and fine aggregate mortars.

摘要

中国鄂尔多斯有大量对环境有害的砒砂岩和沙漠砂。砒砂岩陶粒砂和沙漠砂可复合制备轻细集料,常用于建筑砂浆。然而,轻细集料的密度和颗粒形状如何影响其流变性能尚不清楚。在本研究中,我们以克里格 - 多尔蒂模型和沙托 - 奥瓦莱 - 特伦模型为基础,建立了轻细集料砂浆流变性能的预测模型。首先,针对轻细集料砂浆引入并修正了密度和颗粒形态参数。然后,使用图像分析技术测量了不同类型细集料颗粒的形态参数。结果表明,颗粒的圆度随密度降低而减小,粗糙度和长宽比均增大。据此建立了颗粒形态参数与特性黏度之间的回归模型。研究了不同类型砂浆的流变性能。我们发现,随着颗粒密度降低,屈服应力和塑性黏度持续下降,呈现剪切增稠行为。基于密度 - 形态耦合效应,提出了修正的克里格 - 多尔蒂模型和沙托 - 奥瓦莱 - 特伦模型。这些模型能够更准确地预测轻细集料砂浆的塑性黏度和屈服应力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d364/11621120/b65857fdfcbc/41598_2024_82240_Fig1_HTML.jpg

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