Incremental Viscoelastic Damage Contact Models for Asphalt Mixture Fracture Assessment

IF 2.7 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
G. Câmara, R. Micaelo, Nuno Monteiro Azevedo, Hugo Silva
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Abstract

Asphalt mixtures are widely used as a surfacing material for pavements due to their several advantages. For this reason, robust numerical models still need to be developed to improve the understanding of their fracture behaviour. Recently, an incremental generalised Kelvin (GK) contact model that relates increments in contact displacements with increments in contact forces was proposed to assess the viscoelastic behaviour of asphalt mixtures within a discrete element method (DEM) framework. In this work, the contact model is extended to allow its application to asphalt mixture fracture studies. Two damage models—a brittle and a bilinear softening—coupled with the GK contact model are proposed to consider damage initiation and propagation. A parametric study is presented that assesses the impact of the GK-Damage parameters, showing a sensitivity to the loading velocity and the Maxwell elements, particularly its viscosity element, on the stress–strain response of a single contact. A reduced-size numerical mastic is initially used to speed up the calibration process of the GK-Damage contact parameters, with subsequent validation on a specimen with real experimental dimensions. It is shown that the proposed calibrated damage models can successfully reproduce the time-dependent behaviour, peak stress, and crack path observed in experimental results, highlighting the benefits of the adopted methodology. For the GK-Bilinear model, the fracture energy and maximum contact tensile stress are shown to adjust both the peak stress and softening response. Uniaxial tensile tests on asphalt mixtures indicate that the GK-Bilinear model provides a more realistic characterisation of fracture development. A higher susceptibility to damage at aggregate-to-mastic contacts compared to contacts within the mastic phase is identified.
用于沥青混合料断裂评估的增量粘弹性损伤接触模型
沥青混合料因其多种优点而被广泛用作路面铺设材料。因此,仍需开发稳健的数值模型,以加深对其断裂行为的理解。最近,有人提出了一种增量广义开尔文(GK)接触模型,该模型将接触位移的增量与接触力的增量联系起来,用于在离散元素法(DEM)框架内评估沥青混合料的粘弹性行为。在这项工作中,对接触模型进行了扩展,以便将其应用于沥青混合料断裂研究。提出了两种损伤模型--脆性模型和双线性软化模型--与 GK 接触模型相结合,以考虑损伤的发生和传播。参数研究评估了 GK 损坏参数的影响,显示了加载速度和麦克斯韦元素(尤其是其粘度元素)对单个接触的应力-应变响应的敏感性。最初使用缩小尺寸的数值胶泥来加快 GK-Damage 接触参数的校准过程,随后在具有实际实验尺寸的试样上进行验证。结果表明,所提出的校准损伤模型可以成功地再现实验结果中观察到的随时间变化的行为、峰值应力和裂纹路径,突出了所采用方法的优势。对于 GK-双线性模型,断裂能和最大接触拉伸应力可调整峰值应力和软化响应。沥青混合料的单轴拉伸试验表明,GK-Bilinear 模型提供了更真实的断裂发展特征。与胶凝阶段内的接触相比,集料与胶凝接触处更容易发生损坏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Infrastructures
Infrastructures Engineering-Building and Construction
CiteScore
5.20
自引率
7.70%
发文量
145
审稿时长
11 weeks
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