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中高温水侵蚀作用下复合改性多孔沥青混合料低温性能衰变研究

Study on Low-Temperature Performance Decay of Composite-Modified Porous Asphalt Mixture under Medium- and High-Temperature Water Erosion.

作者信息

Chai Chao, Zhang Da, Wang Zhongkun, Ding Guangya

机构信息

Department of Civil Engineering, College of Architecture and Engineering, Wenzhou University, Wenzhou 325035, China.

Key Laboratory of Soft Soil Foundation and Coastal Reclamation Engineering Technology in Zhejiang Province, Wenzhou 325035, China.

出版信息

Materials (Basel). 2023 Nov 8;16(22):7079. doi: 10.3390/ma16227079.

Abstract

This paper studies the decay law of low-temperature crack resistance performance of rubber powder basalt fiber composite-modified porous asphalt concrete (CM-PAC) under medium- and high-temperature water erosion. Firstly, the prepared Marshall specimens were subjected to water erosion treatment at different temperatures of 20 °C, 40 °C, and 60 °C for 0-15 days. Then, the processed specimens were subjected to low-temperature splitting tests, and acoustic emission data during the splitting test process were collected using an acoustic emission device. It can be seen that the low-temperature splitting strength and low-temperature splitting stiffness modulus of CM-PAC gradually decrease with the increase in water erosion time. The maximum reduction rates of the two compared to the control group reached 72.63% and 91.60%, respectively. The low-temperature splitting failure strain gradually increases. Under the same erosion time, the higher the temperature of water, the more significant the amplitude of changes in the above parameters. In addition, it is shown that as the water erosion time increases, the first stage of loading on the specimen gradually shortens, and the second and third stages gradually advance. As the water temperature increases and the water erosion time prolongs, the acoustic emission energy released by the CM-PAC specimen during the splitting process slightly decreases. The application of acoustic emission technology in the splitting process can clarify the changes in the failure pattern of CM-PAC specimens during the entire loading stage, which can better reveal the impact of medium- to high-temperature water on the performance degradation of CM-PAC.

摘要

本文研究了橡胶粉玄武岩纤维复合改性多孔沥青混凝土(CM-PAC)在中高温水侵蚀作用下的低温抗裂性能衰减规律。首先,将制备好的马歇尔试件在20℃、40℃和60℃不同温度下进行0 - 15天的水侵蚀处理。然后,对处理后的试件进行低温劈裂试验,利用声发射装置采集劈裂试验过程中的声发射数据。结果表明,CM-PAC的低温劈裂强度和低温劈裂劲度模量随水侵蚀时间的增加而逐渐降低。与对照组相比,两者的最大降低率分别达到72.63%和91.60%。低温劈裂破坏应变逐渐增大。在相同侵蚀时间下,水的温度越高,上述参数的变化幅度越显著。此外,结果表明,随着水侵蚀时间的增加,试件加载的第一阶段逐渐缩短,第二和第三阶段逐渐提前。随着水温升高和水侵蚀时间延长,CM-PAC试件在劈裂过程中释放的声发射能量略有降低。声发射技术在劈裂过程中的应用能够明确CM-PAC试件在整个加载阶段破坏模式的变化情况,从而更好地揭示中高温水对CM-PAC性能劣化的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/970a/10672259/6d128747ce48/materials-16-07079-g001.jpg

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