Wu Dongxing, Chu Wenchao, Wang Longlin, Wang Wensheng, Wang Haoyun, Shangguan Xuanhao, Cui Xiang
First Detachment, Guangxi Transportation Comprehensive Administrative Law Enforcement Bureau, Nanning 530007, China.
China State Construction Railway Investment & Engineering Group Co., Ltd, Beijing 100053, China.
Materials (Basel). 2022 Apr 27;15(9):3171. doi: 10.3390/ma15093171.
Utilizing recycled crushed clay brick (RCB) from C&D waste in road engineering construction as the substitute for natural aggregates has attracted a lot of attention, which would be a promising step forward towards sustainable development and green construction. The objective of this study is to assess the feasibility of cement-stabilized macadam (CSM), incorporating various RCB fine aggregate substitution ratios. For this purpose, the physical and chemical properties of RCB fine aggregate was tested, and RCB exhibited a porous surface micro-morphology, high water absorption and pozzolanic activity. Subsequently, a comprehensive experimental investigation of modified CSM with RCB has been carried out based on laboratory tests concerning the mechanical and shrinkage properties. Results showed that higher RCB fine aggregate substitution ratio resulted in lower unconfined compressive strength, and the negative influence of RCB on unconfined compressive strength would decrease gradually, varying curing time; however, the higher the RCB substitution ratio was, the larger the indirect tensile strength at 90 d curing time of the late curing period was. CSM containing RCB had an overall increasing accumulative water loss rate, accumulative strain of dry shrinkage and average coefficient of dry shrinkage, except that 20% RCB resulted in an excellent dry shrinkage property. Moreover, RCB with pozzolanic activity reacted very slowly mainly at later ages, enhancing the interfacial transition zone.
在道路工程建设中利用建筑与拆除废弃物中的再生碎粘土砖(RCB)替代天然集料已引起广泛关注,这将是朝着可持续发展和绿色建设迈出的充满希望的一步。本研究的目的是评估掺入不同RCB细集料替代率的水泥稳定碎石(CSM)的可行性。为此,对RCB细集料的物理和化学性质进行了测试,结果表明RCB呈现出多孔表面微观形貌、高吸水性和火山灰活性。随后,基于有关力学和收缩性能的室内试验,对掺RCB的改性CSM进行了全面的试验研究。结果表明,较高的RCB细集料替代率导致无侧限抗压强度降低,且随着养护时间的变化,RCB对无侧限抗压强度的负面影响会逐渐减小;然而,RCB替代率越高,后期养护90 d时的间接抗拉强度越大。除20%的RCB具有优异的干缩性能外,含RCB的CSM的累计失水率、干缩累计应变和平均干缩系数总体呈上升趋势。此外,具有火山灰活性的RCB主要在后期反应非常缓慢,增强了界面过渡区。