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再生骨料与沙漠砂水泥稳定基层的研究

Investigation on Cement-Stabilized Base with Recycled Aggregate and Desert Sand.

作者信息

Liu Fengchao, Qin Yongjun, Yang Yiheng

机构信息

School of Architecture and Engineering, Xinjiang University, Urumqi 830049, China.

出版信息

Materials (Basel). 2024 Aug 28;17(17):4262. doi: 10.3390/ma17174262.

Abstract

This paper mainly explores the feasibility of using desert sand (DS) and recycled aggregate in cement-stabilized bases. Recycled coarse aggregate (RCA) and DS serve as the substitutes of natural coarse and fine aggregates, respectively, in cement-stabilized bases. A four-factor and four-level orthogonal test is designed to analyze the unconfined compressive strength, splitting tensile strength, and compressive resilient modulus. Furthermore, this paper investigates the effects of cement content, fly ash (FA) replacement rate, RCA replacement rate, and DS replacement rate on the road performance of cement-stabilized bases composed of RCA and DS. The test results reveal that the performance of cement-stabilized bases with partial RCA instead of natural coarse aggregate (NCA) and partial DS instead of natural fine aggregate satisfies the road use. The correlation and microscopic analyses of the test results imply the feasibility of applying DS and recycled aggregate to cement-stabilized bases. This paper calculates and evaluates the life cycle of carbon emissions of desert sand and recycled coarse aggregate cement-stabilized macadam (DRCSM) and finds that both DS and RCA can reduce the carbon emissions of CSM, which has a positive effect on improving the environment and solving the climate crisis. It is hoped that this paper can offer a solid theoretical foundation for promoting the application of DS and recycled aggregate in road engineering.

摘要

本文主要探讨在水泥稳定基层中使用沙漠砂(DS)和再生骨料的可行性。在水泥稳定基层中,再生粗骨料(RCA)和DS分别替代天然粗、细骨料。设计了一个四因素四水平的正交试验,以分析无侧限抗压强度、劈裂抗拉强度和抗压回弹模量。此外,本文研究了水泥含量、粉煤灰(FA)替代率、RCA替代率和DS替代率对由RCA和DS组成的水泥稳定基层路用性能的影响。试验结果表明,部分用RCA替代天然粗骨料(NCA)且部分用DS替代天然细骨料的水泥稳定基层性能满足道路使用要求。试验结果的相关性和微观分析表明,将DS和再生骨料应用于水泥稳定基层是可行的。本文计算并评估了沙漠砂和再生粗骨料水泥稳定碎石(DRCSM)的碳排放生命周期,发现DS和RCA均可降低CSM的碳排放,这对改善环境和解决气候危机具有积极作用。希望本文能为推动DS和再生骨料在道路工程中的应用提供坚实的理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5657/11396647/ab58dfaa7b8c/materials-17-04262-g001.jpg

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