Wieser Martin, Schaur Andreas, Unterberger Seraphin Hubert
Unit of Material Technology, University of Innsbruck, Technikerstrasse 13, 6020 Innsbruck, Austria.
Materials (Basel). 2021 Mar 8;14(5):1273. doi: 10.3390/ma14051273.
The aim of this work is to determine the influence of the bitumen chemistry on the rheological performance of bitumen and polymer modified bitumen (PmB), as well as the polymer distribution and storage stability. Six different bitumens and their 5 wt.% SBS mixtures are considered in this work. The bitumen composition was determined by SARA fractioning, which was then correlated with the glass transition temperature, complex modulus |G*|, and phase angle, which were obtained by parallel-plate dynamic shear rheology in the temperature range of -25 to 65 °C. The polymer distribution, which was derived from fluorescence microscopy images and the storage stability (determined by tube test) also correlated with the SARA fractions. It was found that the saturates decrease |G*| and Tg and increase the phase angle in crude bitumen, while the asphaltenes increase |G*| and the phase angle. For PmB, the amount of swelling was determined by the saturate content of bitumen. The glass transition temperature of PmBs increases for low saturate and decreases for high saturate contents. |G*| and the phase angle of PmBs correlates with the saturate content, with a varying influence depending on a high or low saturate content and the temperature range due to saturate depletion in the bitumen-rich phase and the varying vol% polymer-rich phase. The aromatic and resin fractions show no correlation in the considered bitumens and PmBs.
本工作的目的是确定沥青化学性质对沥青及聚合物改性沥青(PmB)流变性能的影响,以及聚合物分布和储存稳定性。本工作中考虑了六种不同的沥青及其5 wt.% 的SBS混合物。通过SARA分馏法确定沥青组成,然后将其与玻璃化转变温度、复数模量|G*|和相位角相关联,这些参数是在-25至65°C的温度范围内通过平行板动态剪切流变学获得的。由荧光显微镜图像得出的聚合物分布以及储存稳定性(通过试管试验确定)也与SARA馏分相关。研究发现,饱和烃会降低原油沥青中的|G*|和Tg,并增大相位角,而沥青质则会增大|G*|和相位角。对于PmB,溶胀量由沥青的饱和烃含量决定。低饱和烃含量时PmB的玻璃化转变温度升高,高饱和烃含量时则降低。PmB的|G*|和相位角与饱和烃含量相关,由于富含沥青相中的饱和烃损耗以及富含聚合物相的体积分数变化,其影响因饱和烃含量高低和温度范围而异。在所研究的沥青和PmB中,芳烃和树脂馏分没有相关性。