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首页> 外文期刊>Construction and Building Materials >Design and performance of waterborne epoxy-SBR asphalt emulsion (WESE) slurry seal as under-seal coat in rigid pavement
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Design and performance of waterborne epoxy-SBR asphalt emulsion (WESE) slurry seal as under-seal coat in rigid pavement

机译:水性环氧-SBR沥青乳液(WESE)浆料密封的设计与性能,如刚性路面上的密封罩

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摘要

Common slurry seal is poor at preventing pumping distress when used as the under-seal coat in rigid pavement. In order to improve the water stability of common slurry seal and reduce the pumping distress in rigid pavement, this paper adopts the method of compositely modified slurry seal using waterborne epoxy resin (WER) and styrene-butadiene rubber (SBR) latex. First, waterborne epoxy-SBR asphalt emulsion (WESE) was prepared and fine-graded WESE slurry seal was designed according to the performance requirements for the under-seal coat in rigid pavement. Then, dynamic water erosion resistance, bonding performance and isolation effect of the WESE slurry seal was analyzed and evaluated via a series of tests. Results showed that the water content, the dosage of WER in the WESE, and the WESE content had an effect on the properties of the WESE slurry mixture. In terms of the fine-graded WESE slurry mixture, the content of water and WESE is recommended to be 8.5% and 13.5%, respectively, by weight of aggregate, and the dosage of WER is recommended to be 3% by weight of WESE. The WESE slurry mixture, especially the fine-graded WESE slurry mixture, showed excellent resistance to dynamic water erosion. Moreover, the bonding performance between the WESE slurry seal and the semi-rigid base was affected by seal gradation, forming temperature and curing temperature. In order to guarantee a good bonding performance, the WESE slurry seal should be designed as a fine-graded mineral aggregate, and it should be formed at 20 degrees C and cured at no less than 10 degrees C. The WESE slurry seal showed the best isolation effect compared to both the chip seal and the asphalt concrete seal. (C) 2020 Elsevier Ltd. All rights reserved.
机译:当用作刚性路面中的密封件外壳时,常见的浆料密封件差。为了提高普通浆料密封的水稳定性,减少刚性路面中的泵送窘迫,采用水性环氧树脂(WER)和苯乙烯 - 丁二烯橡胶(SBR)胶乳的综合改性浆料密封的方法。首先,制备水性环氧-SBR沥青乳液(WESE),并根据刚性路面中的密封件外壳的性能要求设计精细的Wesce Slurry密封。然后,通过一系列测试分析和评估Wesce浆料密封的动态水腐蚀性,粘接性能和隔离效果。结果表明,WESE中的水含量,WER中的剂量,以及WESS含量对Wess Slurry混合物的性质有影响。就细梯度的Wess浆料混合物而言,建议水和Wesce的含量分别为8.5%和13.5%,重量的聚集体分别为骨料的剂量,均为3重量%的Wesc。 Wesc Slurry混合物,尤其是细渐进的Wesc浆料混合物,表现出对动态水腐蚀的优异抗性。此外,Wess Slurry密封和半刚性基底之间的粘合性能受到密封灰度,形成温度和固化温度的影响。为了保证良好的粘接性能,Wesc Slurry Seal应设计为细渐进的矿物骨料,它应以20摄氏度形成并在不小于10℃下固化。Wesc Slurry密封件最佳与芯片密封和沥青混凝土密封相比隔离效果。 (c)2020 elestvier有限公司保留所有权利。

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