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Comparison of ESEM and physical properties of virgin and laboratory aged asphalt binders

机译:原始和实验室老化沥青粘合剂的ESEM和物理性能比较

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摘要

The physical and microstructural properties of four straight run asphalt binders were examined and compared in combination with short term aging (RTFOT) and long-term (PAV) laboratory aging. RTFOT aging was conducted at temperatures of 123, 143 and 163 degrees C. The physical testing parameters included penetration, softening point and Dynamic Shear Rheology (DSR) complex shear modulus and phase angle at 10 degrees C. The binders selected came from four different sources and had the same penetration grading (70/100). They all showed an increase in stiffness with aging, including with the increase in RTFOT temperatures and especially with PAV aging. The microstructural evolution of the binder was examined by Environmental Scanning Electron Microscopy (ESEM) on aged binders at 123 and 163 degrees C. The physical changes with aging corresponded to an evolution in the binders' 'fibril' microstructure under ESEM, as a result of electron beam exposure, with the microstructure getting denser with PAV aging. This densification (fibril area) of the microstructure was quantified with image analysis for the virgin and RTFOT aged samples, and the fibril formation time was also measured. The asphalt binders showed varied ESEM 'fingerprints' and aged in different ways. The ESEM 'formation time' and 'fibril area' of the binders generally showed good correlation with the physical properties, although this was not the case for all of the binders due to their unique aging characteristics.
机译:检查了四种直馏沥青粘合剂的物理和微观结构特性,并与短期老化(RTFOT)和长期(PAV)实验室老化相结合进行了比较。 RTFOT老化是在123、143和163摄氏度的温度下进行的。物理测试参数包括渗透,软化点和动态剪切流变学(DSR)的复数剪切模量和10°C的相角。选择的粘合剂来自四种不同来源并且具有相同的渗透度等级(70/100)。它们都显示出随着时效而增加的刚度,包括随着RTFOT温度的升高,尤其是随着PAV时效的增加。通过环境扫描电子显微镜(ESEM)在123和163℃下老化的粘合剂上检查了粘合剂的微观结构演变。随着时间的推移,随着老化的物理变化对应于ESEM下粘合剂的“原纤维”微观结构的演变,这是由于电子束暴露,随着PAV老化,其微观结构变得更致密。对于原始和RTFOT老化的样品,通过图像分析对微观结构的这种致密化(原纤维面积)进行了定量,并且还测量了原纤维形成时间。沥青粘合剂显示出各种ESEM“指纹”并以不同方式老化。粘合剂的ESEM“形成时间”和“原纤面积”通常显示出与物理性质的良好相关性,尽管并非所有粘合剂都具有独特的老化特性,但并非如此。

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