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首页> 外文期刊>Canadian Journal of Civil Engineering >Integrated experimental-numerical approach to model progressive moisture damage behavior of bituminous paving mixtures
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Integrated experimental-numerical approach to model progressive moisture damage behavior of bituminous paving mixtures

机译:集成实验-数值方法来模拟沥青摊铺混合物的逐步水分破坏行为

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摘要

This paper presents an integrated experimental–numerical approach to model the progressive moisture damage characteristics of bituminous paving mixtures. To this end, a Fickian model is utilized to determine the diffusion coefficient, which is a key property of simulating moisture transport causing moisture damage, and the semicircular bend (SCB) fracture tests are carried out to obtain the elastic stiffness and fracture properties at different levels of moisture conditioning. A se-quentially coupled moisture diffusion and mechanical loading is implemented using a fmite element method to model the progressive damage behavior due to the moisture transport followed by the mechanical loading. To simulate the fracture process as a gradual separation, a cohesive zone model is incorporated into the model. The integrated approach presented herein results in a degradation function that characterizes the progressive damage due to moisture uptake with two model parameters representing the remaining properties of materials and their degradation trend. These two model parameters can be used to estimate moisture damage mechanisms and damage resistance potential, both of which are material specific.
机译:本文提出了一种综合的实验-数值方法来模拟沥青铺路混合物的逐步湿气破坏特性。为此,利用Fickian模型确定扩散系数,该系数是模拟引起水分破坏的水分传输的关键特性,并进行了半圆弯曲(SCB)断裂试验,以得到不同条件下的弹性刚度和断裂特性。水分调节水平。使用有限元方法实现了依次耦合的湿气扩散和机械载荷,以模拟由于机械载荷引起的湿气传输而造成的渐进式破坏行为。为了模拟断裂过程的逐步分离,将粘聚区模型合并到模型中。本文介绍的集成方法产生了一个退化函数,该函数表征了由于吸湿而引起的渐进式破坏,具有两个表示材料的剩余特性及其退化趋势的模型参数。这两个模型参数可用于估计湿气破坏机理和潜在的破坏阻力,这两者都是特定于材料的。

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