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含陶瓷废料集料的橡胶沥青对沥青路面降温效果的评估

Evaluation of Stone Mastic Asphalt Containing Ceramic Waste Aggregate for Cooling Asphalt Pavement.

作者信息

Huang Qibo, Qian Zhendong, Hu Jing, Zheng Dong

机构信息

Intelligent Transportation System Research Center, Southeast University, Nanjing 210096, China.

School of Transportation, Southeast University, Nanjing 210096, China.

出版信息

Materials (Basel). 2020 Jul 2;13(13):2964. doi: 10.3390/ma13132964.

Abstract

Construction and demolition waste material is of great potential for use in pavement engineering. This paper aims to investigate the feasibility of ceramic waste aggregate (CA) used in cooling asphalt pavement through a series of test methods and simulation techniques. Stone mastic asphalt (SMA) containing 10%, 20%, 30%, 40%, and 50% coarse ceramic waste aggregate (CASMAs) was first designed using the Marshall method. Afterward, the road performance and thermal insulation performance of the five different CASMAs were assessed by a comprehensive lab test, including a wheel rutting test, moisture susceptibility test, bending beam test, fatigue beam test, and indoor thermal insulation test. Finally, a 2D finite-element (FE) model was developed to investigate the transient thermal field and rutting deformation response of the cooling asphalt pavement with CASMAs. Results show that CASMAs experienced degradation of rutting resistance, moisture susceptibility, and anti-cracking performance while still meeting technical requirements with CA content of up to 40%. On the other hand, CASMAs can cool the pavement's temperature by 11.5 °C at the bottom of asphalt layers. The permanent rutting deformation of cooling asphalt pavement was 45.36% smaller than that of conventional asphalt pavement without CASMAs. Based on the test results and numerical simulation results, the optimum content of ceramic waste aggregate in stone mastic asphalt was recommended as 40%.

摘要

建筑与拆除废料在路面工程中具有巨大的利用潜力。本文旨在通过一系列试验方法和模拟技术,研究陶瓷废料集料(CA)用于降温沥青路面的可行性。首先采用马歇尔方法设计了分别含有10%、20%、30%、40%和50%粗陶瓷废料集料(CASMA)的沥青玛蹄脂碎石混合料(SMA)。随后,通过包括车辙试验、水稳定性试验、弯曲梁试验、疲劳梁试验和室内隔热试验在内的综合实验室试验,评估了五种不同CASMA的路用性能和隔热性能。最后,建立了二维有限元(FE)模型,以研究含CASMA的降温沥青路面的瞬态热场和车辙变形响应。结果表明,随着CA含量高达40%,CASMA的抗车辙性能、水稳定性和抗裂性能有所下降,但仍满足技术要求。另一方面,CASMA可使沥青层底部路面温度降低11.5℃。含CASMA的降温沥青路面的永久车辙变形比不含CASMA的传统沥青路面小45.36%。基于试验结果和数值模拟结果,推荐沥青玛蹄脂碎石混合料中陶瓷废料集料的最佳含量为40%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca38/7372478/3bbb921f3863/materials-13-02964-g001.jpg

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