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Fatigue Analysis of Bitumen Modified with Composite of Nano-SiO2 and Styrene Butadiene Styrene Polymer

机译:用纳米SiO2和苯乙烯丁二烯苯乙烯聚合物复合材料改性沥青的疲劳分析

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摘要

Since fatigue cracking is caused in the middle-temperature conditions due to the stresses from heavy traffic and as the bitumen plays a very important role in controlling this failure, therefore, in recent years, the production of the modified bitumen that can give a good performance in the middle temperatures has always attracted the interest of researchers. One of these bitumen modifiers is the styrene butadiene styrene (SBS) polymer. Due to the phase separation of bitumen and polymer, aging and oxidation, this polymer may not exhibit expected field performance at middle temperatures. Therefore, in this research, it is attempted to analyze the middle-temperature performance using the combination of nano-SiO_(2) and SBS polymer in the bitumen modification. In this paper, the addition of SBS and nano-SiO_(2) to the base bitumen resulted in the reduction of the complex modulus, phase angle, storage modulus and loss modulus at middle temperatures, thereby improving the potential of fatigue failure resistance. In general, considering the requirement for the rotational viscosity value up to 3 Pa.s at 135 °C and also, regarding the economic issues in choosing a lower percentage, the combination of 4.5% SBS + 3% nano-SiO_(2) is selected as the optimal composite.
机译:由于疲劳裂解是由于繁忙的胁迫引起的中温条件,因此由于沥青在控制这种失败方面发挥着非常重要的作用,因此,近年来,改性沥青的生产可以带来良好的性能在中间气温中一直吸引了研究人员的兴趣。这些沥青改性剂中的一种是苯乙烯丁二烯苯乙烯(SBS)聚合物。由于沥青和聚合物的相分离,老化和氧化,该聚合物在中间温度下可能不会表现出预期的场效。因此,在该研究中,试图使用沥青修饰中的纳米SiO_(2)和SBS聚合物的组合分析中温性能。在本文中,将SBS和纳米SiO_(2)加入碱基沥青导致中间温度下复杂模量,相角,储存模量和损耗模量的减少,从而提高了疲劳失效阻力的潜力。一般而言,考虑到在135℃下旋转粘度值高达3Pa,而且,关于选择较低百分比的经济问题,4.5%SBS + 3%纳米SiO_(2)的组合是选择为最佳复合材料。

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