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Anti-freezing asphalt concrete: ice-adhesion performance

机译:防冻沥青混凝土:冰粘合性能

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摘要

Because of its excellent ability to melt ice, numerous studies have praised anti-freezing asphalt concrete (AFAC) as a potential replacement for deicing agents. In this paper, we studied the ice-disbonding ability of AFAC from a mechanical perspective. Firstly, the interfacial adhesion mechanism between ice and pavement was discussed based on the quasi-liquid layer (QLL) theory, and the factors influencing ice-pavement adhesion strength were analyzed accordingly. Thereafter, ice-adhesion strength was studied both vertically and horizontally using mechanical tests conducted at the ice-pavement adhesion interface. The findings showed that the AFAC weakened the ice-adhesion strength significantly by up to 80%. Further, the magnitude and characteristics of the effect varied considerably depending upon temperature and the amount added. Finally, AFAC's long-term ice-adhesion characteristics were determined using washing-drying cycles that simulated environmental effects. The results showed that the washing-drying cycles increased ice-adhesion strength significantly, especially at temperatures between 0 and 5 degrees C. The ice-adhesion model based on QLL theory accounted well for the results, which showed variable trends in ice-adhesion strength. However, because the break characteristics varied at different temperatures, the exact value of ice-adhesion strength cannot yet be forecasted accurately. By studying the ice-pavement adhesion interface from a mechanical perspective, this paper may provide some fresh insights for current studies of AFAC.
机译:由于其优异的熔化冰能力,许多研究称赞了抗冻结沥青混凝土(AFAC)作为除冰剂的潜在替代品。在本文中,我们研究了AFAC的冰脱离能力从机械角度来看。首先,基于准液体层(QLL)理论讨论了冰和路面之间的界面粘附机制,并相应地分析了影响冰路面粘合强度的因素。此后,使用在冰路面粘附界面处进行的机械测试垂直和水平地研究冰粘合强度。研究结果表明,AFAC明显耐冰粘力强度达到80%。此外,效果的幅度和特性根据温度和添加量而显着变化。最后,使用模拟环境影响的洗涤干燥循环测定AFAC的长期冰粘附特性。结果表明,洗涤干燥循环显着提高了冰粘合强度,特别是在0和5℃之间的温度下。基于QLL理论的冰粘合模型占结果良好,显示了冰粘合强度的可变趋势。然而,由于在不同温度下变化的断裂特性,因此无法准确地预测冰粘合强度的确切值。通过从机械角度研究冰路面粘附界面,本文可以为AFAC的当前研究提供一些新的见解。

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  • 来源
    《Journal of Materials Science》 |2018年第7期|共15页
  • 作者单位

    Changan Univ Sch Mat Sci &

    Engn Engn Res Ctr Transportat Mat Minist Educ Xian 710064 Shaanxi Peoples R China;

    Changan Univ Sch Mat Sci &

    Engn Engn Res Ctr Transportat Mat Minist Educ Xian 710064 Shaanxi Peoples R China;

    Changan Univ Sch Mat Sci &

    Engn Engn Res Ctr Transportat Mat Minist Educ Xian 710064 Shaanxi Peoples R China;

    Changan Univ Sch Mat Sci &

    Engn Engn Res Ctr Transportat Mat Minist Educ Xian 710064 Shaanxi Peoples R China;

    Xinjiang Transportat Planning Surveying &

    Design Urumqi Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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