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首页> 外文期刊>The Journal of Chemical Physics >ROSE bitumen: Mesoscopic model of bitumen and bituminous mixtures
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ROSE bitumen: Mesoscopic model of bitumen and bituminous mixtures

机译:玫瑰沥青:沥青和沥青混合物的脑镜模型

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摘要

We present a mesoscopic model for bitumen and bituminous mixtures. The model, which is based on dissipative particle dynamics, consists of different dynamical entities that represent the different characteristic time scales. Through the stress relaxation function, the mechanical properties of the model are investigated. For pure bitumen, the viscosity features super-Arrhenius behavior in the low-temperature regime in agreement with experimental data. The frequency-dependent viscoelastic properties show purely viscous behavior at low frequencies with increasing elasticity and hardening at higher frequencies, as expected. The model dynamics are analyzed in the framework of longitudinal hydrodynamics. The thermal process is two orders of magnitude slower than the attenuation of the density-wave propagation; hence the dynamic structure factor is dominated by a sharp Rayleigh peak and a relatively broad Brillouin peak. The model is applied to study triblock-copolymer-modified bitumen mixtures. Effects of the polymer concentration and end-block interactions with the bitumen are investigated. While the polymer concentration has an effect on the mechanical properties, the effect of increasing repulsive interactions between the bitumen and the polymer end-blocks is much more dramatic; it increases the viscosity of the mixture and shifts the onset of the elastic behavior to lower frequencies. For increased repulsion, the polymer end-blocks form small clusters that can be connected by a dynamic polymer backbone network. A simple Flory-Huggins analysis reveals the onset of segregation of the end-blocks in the bitumen mixture in agreement with the simulation data. Hence the changed mechanical properties are due to the emergence of large-scale structures as the repulsion is increased, which conforms to known mechanisms of microphase separation in polymer-modified bitumens. Published by AIP Publishing.
机译:我们介绍了沥青和沥青混合物的介观模型。基于耗散粒子动态的模型包括不同的动态实体,其代表不同的特征时间尺度。通过应力松弛功能,研究了模型的机械性能。对于纯沥青,粘度与实验数据一致的低温制度中的超级arrhenius行为。频率依赖性粘弹性特性在低频下显示出纯粘性行为,随着预期的预期,在较高频率下较高的弹性和硬化。在纵向流体动力学框架中分析了模型动态。热处理是比密度波传播的衰减慢的两个数量级;因此,动态结构因子由尖锐的瑞利峰和相对宽的布里渊峰支配。该模型用于研究三嵌段共聚物改性的沥青混合物。研究了聚合物浓度和端嵌段与沥青相互作用的影响。虽然聚合物浓度对机械性能有影响,但是增加沥青和聚合物端嵌段之间的排斥相互作用的效果得多。它增加了混合物的粘度并将弹性行为的发作变为较低频率。为了增加排斥,聚合物端口形成小簇,可以通过动态聚合物骨架网络连接。简单的血液 - Huggins分析揭示了与模拟数据一致的沥青混合物中末端块的偏析发作。因此,随着排斥力的增加,改变的机械性能是由于大规模结构的出现,这符合聚合物改性沥青中的已知机制。通过AIP发布发布。

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