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Temperature and thermal history dependence of the microstructure in bituminous materials

机译:沥青材料中微观结构的温度和热历史依赖性

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摘要

Bituminous materials are known to possess microstructures, which can be imaged by atomic force microscopy (AFM). The main objective of this work is to determine the influence of temperature and thermal history on the microstructures of bitumen by means of AFM. Three bitumen samples from different crude sources are studied. Their microstructures are imaged in real time by AFM for various thermal scenarios such as (slow) heating and cooling. It is found that the microstructural features show a tendency to align themselves with increasing temperature. Moreover a hysteresis-like effect in the microstructural properties is observed between the heating and cooling paths. Finally it is found that bitumen possess a 'memory' for its maximum processing temperature. Different maximum processing temperatures lead to different room temperature microstructures of the material. Thus, a bituminous material may be characterized by a 'reset temperature' above which memory of its previous microstructural state is completely erased.
机译:已知沥青材料具有微观结构,可以通过原子力显微镜(AFM)对其进行成像。这项工作的主要目的是通过原子力显微镜确定温度和热历史对沥青微观结构的影响。研究了来自不同原油来源的三种沥青样品。通过AFM针对各种热场景(例如(缓慢)加热和冷却)实时成像其微结构。发现微结构特征显示出随着温度升高而自我对准的趋势。此外,在加热和冷却路径之间观察到微观结构性质的滞后效应。最后,发现沥青在其最高加工温度下具有“记忆”。不同的最高加工温度导致材料的室温微结构不同。因此,沥青材料的特征在于“复位温度”,在该温度以上,其先前的微结构状态的记忆被完全擦除。

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