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Improved models for the prediction of asphalt binder dynamic shear modulus and phase angle

机译:改进了沥青粘合剂动态剪切模量和相位角的预测模型

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In this paper, new set of models for predicting the dynamic shear modulus and phase angle of asphalt binders from conventional viscosity are developed and presented. Based on theoretical considerations, suitable forms of general logistic functions are introduced to develop new models for binder dynamic shear modulus and phase angle over a wide range of temperature and loading conditions. A nonlinear optimization technique based on the Nelder-Mead optimization method is used to obtain the coefficients for the new binder dynamic shear modulus and phase angle models. The experimental binder testing database consisting of dynamic shear modulus, phase angle, frequency, viscosity measurements of thirty-two (32) unmodified and nine (9) modified binders from different sources is used in the study. A total of 7, 120 binder data points are used for the model development, evaluation and validation. The new models deliver very accurate prediction of the binder dynamic shear modulus and phase angle from the conventional steady-state viscosity indicated by very high goodness of fit using 7,120 binder data points. A new parameter termed the "reduced viscosity" is identified which produces a smooth continuous function of the binder phase angle for both modified and unmodified binders using a single viscosity shift factor. The reduced viscosity is considered as the independent variable in the new dynamic shear modulus and phase angle predictive models. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在本文中,开发并呈现了新的用于预测常规粘度沥青粘合剂的动态剪切模量和相位角的新型模型。基于理论考虑,引入了合适形式的一般逻辑功能,以在宽范围的温度和装载条件下开发用于粘合剂动态剪切模量和相位角的新模型。基于Nelder-Mead优化方法的非线性优化技术用于获得新的粘合剂动态剪切模量和相位角模型的系数。实验粘合剂检测数据库由动态剪切模量,相角,频率,粘度测量组成的三十二(32)(32)所述的不同来源的未改性和九(9)修饰的粘合剂。共有7个,120个粘合剂数据点用于模型开发,评估和验证。新型模型通过使用7,120粘合剂数据点的非常高的稳定性表示的常规稳态粘度,对粘合剂动态剪切模量和相位角进行非常精确的预测。鉴定了称为“降低粘度”的新参数,其使用单一粘度换档因子产生改性和未改性粘合剂的粘合剂相角的平滑连续功能。降低的粘度被认为是新动态剪切模量和相位角预测模型中的独立变量。 (c)2020 elestvier有限公司保留所有权利。

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