首页> 外文期刊>Journal of materials in civil engineering >Generalized Maxwell Viscoelastic Contact Model-Based Discrete Element Method for Characterizing Low-Temperature Properties of Asphalt Concrete
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Generalized Maxwell Viscoelastic Contact Model-Based Discrete Element Method for Characterizing Low-Temperature Properties of Asphalt Concrete

机译:基于广义麦克斯韦粘弹性接触模型的离散元方法表征沥青混凝土的低温性能

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摘要

A universal asphalt concrete discrete element method (DEM) model was established in this paper. Coarse aggregates consisting of balls bonded by elastic contact models were simulated using irregular particles. Asphalt mastic consisting of balls bonded by a generalized Maxwell viscoelastic contact model held coarse aggregates together. The generalized Maxwell viscoelastic contact model was developed based on a finite difference scheme using Visual Studio 2005. The relationship between microscale model input and macroscale properties of asphalt mastics and coarse aggregates was derived to calibrate contact parameters of the proposed DEM model. Dynamic modulus tests, static creep tests, bending tests at low temperature, and the corresponding DEM simulations were implemented to contrast the simulation effect of the proposed DEM model and the existing DEM model. Simulation results show that the proposed DEM model exhibits an improved accuracy using a universal mathematical structure. The averaged and maximum relative errors of different property indexes are all less than 5 and 8%, demonstrating the advantage of the proposed DEM model in accurately and comprehensively characterizing low-temperature properties of asphalt concrete. The proposed DEM asphalt concrete model provides a new avenue for studying pavement properties and mechanical mechanisms of asphalt concrete at microscale.
机译:建立了通用沥青混凝土离散元法(DEM)模型。使用不规则颗粒模拟由弹性接触模型粘合的球组成的粗聚集体。由广义麦克斯韦粘弹性接触模型粘结的球组成的沥青胶泥将粗骨料粘合在一起。使用Visual Studio 2005基于有限差分方案开发了广义Maxwell粘弹性接触模型。推导了微观模型输入与沥青胶泥和粗骨料的宏观性能之间的关系,以校准所提出的DEM模型的接触参数。进行了动态模量测试,静态蠕变测试,低温弯曲测试以及相应的DEM仿真,以对比提出的DEM模型和现有DEM模型的仿真效果。仿真结果表明,所提出的DEM模型使用通用数学结构具有更高的精度。不同性能指标的平均相对误差和最大相对误差均小于5和8%,证明了所提DEM模型在准确,全面表征沥青混凝土低温特性方面的优势。所提出的DEM沥青混凝土模型为研究沥青混凝土的微观性质和力学机理提供了一条新途径。

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