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Molecular weight distribution of asphalt binders from Laser Desorption Mass Spectroscopy (LDMS) technique and its relationship to linear viscoelastic relaxation spectra

机译:来自激光解吸质谱(LDMS)技术的沥青粘合剂的分子量分布及其与线性粘弹性松弛光谱的关系

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摘要

Asphalt binder is a complex viscoelastic hydrocarbon, whose performance depends upon interaction between its physical and chemical properties, both of which are equally important to the successful understanding of the material. In this research effort, a physico-chemical relationship is developed by utilizing the technique of Laser Desorption Mass Spectroscopy (LDMS) to relate the molecular structure of asphalt binders to its viscoelastic properties. The molecular weight distribution (MWD) data obtained from the LDMS technique is used to develop a relationship between number average molecular weight and width of relaxation spectrum of asphalt binders obtained from linear viscoelastic characterization using dynamic shear rheometer. The relationship shows that as the molecular weight of asphalt binders increase, they require more time to relax the developed stresses. Also, the shape descriptors of the molecular weight distribution suggest that asphalt binders possessing greater asymmetry and kurtosis require more time to relax the developed stresses.
机译:沥青粘合剂是复合粘弹性烃,其性能取决于其物理和化学性质之间的相互作用,这两者都与成功理解材料同样重要。在这项研究中,通过利用激光解吸质谱(LDMS)的技术来开发物理化学关系,以将沥青粘合剂的分子结构与其粘弹性性能相关。从LDMS技术获得的分子量分布(MWD)数据用于使用动态剪切流变仪从线性粘弹性表征从线性粘弹性表征获得的沥青粘合剂的弛豫谱之间的数均分子量和宽度之间的关系。该关系表明,随着沥青粘合剂的分子量增加,它们需要更多时间来放松发育的应力。而且,分子量分布的形状描述符表明,具有更大不对称和峰度的沥青粘合剂需要更多的时间来放宽发育的应力。

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