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Microstructural Modeling of Rheological Mechanical Response for Asphalt Mixture Using an Image-Based Finite Element Approach

机译:基于图像的有限元方法的沥青混合料流变力学响应的微观结构建模

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摘要

In this paper, an image-based micromechanical model for an asphalt mixture’s rheological mechanical response is introduced. Detailed information on finite element (FE) modeling based on X-ray computed tomography (X-ray CT) is presented. An improved morphological multiscale algorithm was developed to segment the adhesive coarse aggregate images. A classification method to recognize the different classifications of the elemental area for a confining pressure purpose is proposed in this study. Then, the numerical viscoelastic constitutive formulation of asphalt mortar in an FE code was implemented using the simulation software ABAQUS user material subroutine (UMAT). To avoid complex experiments in determining the time-dependent Poisson’s ratio directly, numerous attempts were made to indirectly obtain all material properties in the viscoelastic constitutive model. Finally, the image-based FE model incorporated with the viscoelastic asphalt mortar phase and elastic aggregates was used for triaxial compressive test simulations, and a triaxial creep experiment under different working conditions was conducted to identify and validate the proposed finite element approach. The numerical simulation and experimental results indicate that the three-dimensional microstructural numerical model established can effectively analyze the material’s rheological mechanical response under the effect of triaxial load within the linear viscoelastic range.
机译:本文介绍了一种基于图像的沥青混合料流变力学响应的微力学模型。提出了有关基于X射线计算机断层扫描(X射线CT)的有限元(FE)建模的详细信息。提出了一种改进的形态学多尺度算法来分割粘性粗骨料图像。在这项研究中提出了一种分类方法,该方法可以识别用于约束压力目的的基本区域的不同分类。然后,使用模拟软件ABAQUS用户材料子例程(UMAT),以FE代码实现了沥青砂浆的数值粘弹性本构公式。为了避免直接确定随时间变化的泊松比的复杂实验,进行了许多尝试来间接获得粘弹性本构模型中的所有材料特性。最后,将结合粘弹性沥青砂浆相和弹性骨料的基于图像的有限元模型用于三轴压缩试验模拟,并在不同工作条件下进行了三轴蠕变试验,以识别和验证所提出的有限元方法。数值模拟和实验结果表明,所建立的三维微观结构数值模型可以有效地分析材料在线性粘弹性范围内三轴载荷作用下的流变力学响应。

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