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Master Curve Establishment and Complex Modulus Evaluation of SBS-Modified Asphalt Mixture Reinforced with Basalt Fiber Based on Generalized Sigmoidal Model

机译:基于广义乙酸纤维增强SBS改性沥青混合料的Master曲线建立和复杂模量评价

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摘要

Basalt fiber has been proved to be a good modified material for asphalt mixture. The performance of basalt fiber modified asphalt mixture has been widely investigated by extensive researches. However, most studies focused on ordinary static load tests, and less attention was paid to the dynamic mechanical response of asphalt mixture incorporating with basalt fiber. This paper aims to establish the master curve of complex modulus of asphalt mixture incorporating of styrene-butadiene-styrene (SBS) polymer and basalt fiber using the generalized Sigmoidal model. Both loading frequency and temperature were investigated for dynamic mechanical response of asphalt mixture with basalt fiber. In addition, based on the time-temperature superposition principle, the master curves of complex modulus were constructed to reflect the dynamic mechanical response at an extended reduced frequency range at an arbitrary temperature. Results indicated that the generalized Sigmoidal model in this paper could better reflect the dynamic mechanical response accurately with correlation coefficients above 0.97, which is utilized to predict the dynamic mechanical performances accurately. Simultaneously, the modulus values exhibit an increasing trend with loading frequency and decrease versus temperature. However, the phase angle values showed different trends with frequency and temperature.
机译:已证明玄武岩纤维是沥青混合物的良好改性材料。玄武岩纤维改性沥青混合料的性能已被广泛研究广泛研究。然而,大多数研究专注于普通静态载荷试验,并且对含有玄武岩纤维的沥青混合物的动态机械响应支付了较少的注意。本文旨在建立兼容苯乙烯 - 丁二烯 - 苯乙烯(SBS)聚合物和玄武岩纤维的沥青混合物复杂模量的主曲线。研究了沥青纤维沥青混合物的动态机械响应的负载频率和温度。另外,基于时间温度的叠加原理,构造复杂模量的主曲线以在任意温度下反映延长减小的频率范围内的动态机械响应。结果表明,本文中的广义矩形模型可以更好地用0.97高于0.97的相关系数准确地反映动态机械响应,这被利用准确地预测动态机械性能。同时,模量值表现出增加趋势,随着负载频率和降低而导致温度。然而,相位角值显示出频率和温度的不同趋势。

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