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Laboratory Investigation on Microwave Deicing Function of Micro Surfacing Asphalt Mixtures Reinforced by Carbon Fiber

机译:碳纤维增强微表层沥青混合料的微波除冰功能的室内研究

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摘要

Traffic accidents occur frequently during snowfall and freezing rain in winter. Therefore, it is desirable that snow and ice be removed effectively and rapidly without using chemical salt or mechanical devices. In this paper, the influences of carbon fiber with different contents on mechanical properties, microwave reflectivity, and microwave deicing time of micro surfacing asphalt mixtures were investigated. The results indicate the percentage of carbon fiber has significant influences on the mechanical properties of the mixtures. The flexural strength of the mixtures with 0.75 % carbon fiber was 1.5 times and the compressive strength with 0.45 % was 1.3 times higher than those of the mixtures without carbon fiber. At the percentage of 0.45, the minimum reflectivity was reached as -13.5 dB in the frequency range of 2.3-2.6 GHz. The carbon fiber addition can evidently enhance the ability of the mixtures to absorb the microwave. The deicing time keeps decreasing as the carbon fiber percentage increases from 0.15 % until 0.45 %; then increases gradually and rises sharply until 0.75 %. The minimum deicing time reaches 55 s for the mixtures with 0.45 % carbon fiber. The lower the microwave reflectivity is, the shorter the deicing time. The thickness of ice is also found to be an important factor affecting the deicing time of the mixtures. The mixtures with around 15 mm thick ice obtain the shortest deicing time.
机译:在冬季降雪和冻雨期间经常发生交通事故。因此,期望在不使用化学盐或机械装置的情况下有效且快速地去除雪和冰。本文研究了不同含量的碳纤维对微表层沥青混合料的力学性能,微波反射率和微波除冰时间的影响。结果表明碳纤维的百分比对混合物的机械性能有重要影响。具有0.75%碳纤维的混合物的抗弯强度是没有碳纤维的混合物的1.5倍,具有0.45%的抗压强度比没有碳纤维的混合物高1.3倍。以0.45的百分比,在2.3-2.6 GHz的频率范围内,最小反射率达到-13.5 dB。碳纤维的添加可以明显增强混合物吸收微波的能力。随着碳纤维百分比从0.15%增加到0.45%,除冰时间不断减少。然后逐渐增加并急剧增加直到0.75%。对于含0.45%碳纤维的混合物,最小除冰时间达到55 s。微波反射率越低,除冰时间越短。还发现冰的厚度是影响混合物除冰时间的重要因素。冰厚约15毫米的混合物的除冰时间最短。

著录项

  • 来源
    《Journal of testing and evaluation》 |2014年第2期|498-507|共10页
  • 作者单位

    School of Materials Science and Engineering, Chang'an Univ., Xi'an, 710061 P. R. C. Engineering Research Central of Pavement Materials, Ministry of Education of P. R. C. Chang'an Univ., Xi'an, 710061 P. R. C.;

    School of Materials Science and Engineering, Chang'an Univ., Xi'an, 710061 P. R. C.;

    School of Materials Science and Engineering, Chang'an Univ., Xi'an, 710061 P. R. C.,Engineering Research Central of Pavement Materials, Ministry of Education of P. R. C, Chang'an Univ., Xi'an, 710061 P. R. C.;

    School of Materials Science and Engineering, Chang'an Univ., Xi'an, 710061 P. R. C.,Engineering Research Central of Pavement Materials, Ministry of Education of P. R. C, Chang'an Univ., Xi'an, 710061 P. R. C.;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    micro surfacing asphalt mixtures; carbon fiber; microwave reflectivity; deicing time; ice thickness;

    机译:微表层沥青混合物;碳纤维;微波反射率除冰时间冰厚;

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