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Correction of compliance errors in the dynamic shear modulusudof bituminous binders data

机译:校正动态剪切模量中的柔度误差 ud沥青粘结剂数据

摘要

The dynamic shear rheometer (DSR) is one of the most complex and powerful instruments currently used to characterise the linear viscoelastic (LVE) rheological properties of bituminous binders. However, the DSR also has its limitations in that the measured complex modulus data are exposed to errors, known as compliance (testing) errors, particularly at low temperatures and/or high frequencies. This study was conducted to investigate the validity of equations developed by Schröter and associates on complex modulus data collected using the DSR. The equations used were originally developed based on the calibration of the advanced rheometric expanse system (ARES) rheometer. It was found that those equations are able to satisfactorily correct the data on unmodified bitumens and unaged bitumen-filler mastics, including unaged and aged samples. Similar results were also observed for storage and loss moduli master curves. Finally, the 2S2P1D Model was used to calibrate the corrected complex moduli data and it was found that the model satisfactorily simulates the rheological properties of tested samples.
机译:动态剪切流变仪(DSR)是目前用于表征沥青粘合剂的线性粘弹性(LVE)流变性质的最复杂,功能最强大的仪器之一。但是,DSR也有其局限性,特别是在低温和/或高频下,测得的复数模量数据存在误差,称为顺应性(测试)误差。进行这项研究的目的是研究由Schröter提出的方程组的有效性,该方程组与使用DSR收集的复数模量数据有关。最初使用的公式是基于高级流变扩展系统(ARES)流变仪的校准而开发的。已经发现,这些方程能够令人满意地校正未改性沥青和未老化沥青-填充胶泥的数据,包括未老化和老化的样品。对于存储和损耗模量主曲线也观察到了相似的结果。最后,使用2S2P1D模型校准校正后的复模量数据,发现该模型令人满意地模拟了测试样品的流变特性。

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