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Implementation of stress-dependent resilient modulus of asphalt-treated base for flexible pavement design

机译:柔性路面设计中沥青处理基层应力相关弹性模量的实现

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摘要

Asphalt-treated base (ATB) is a widely used base course material in flexible pavements. Due to its lower binder content and lower quality granular material, resilient modulus (M-R) of ATB exhibits a stress dependent property. While most of the pavement analysis software used in the current routine design tasks is based on Burmister's multi-layer elastic theory, in which the M-R is the primary fundamental material property, the software cannot truly deal with the stress-dependent M-R of paving material. In this study, M-R model in the Mechanistic Empirical Pavement Design Guide was adopted to accommodate the stress-dependent M-R of ATBs and the model was implemented in pavement mechanistic analyses through Abaqus finite element software and its user programmed subroutine. The comparison of critical pavement responses was made among pavements with three types of ATBs. Pavement responses obtained using the multi-layered elastic theory and based on resilient moduli recommended by Alaska Department of Transportation & Public Facilities, were also included for comparison.
机译:沥青处理基层(ATB)是柔性路面中广泛使用的基层材料。由于其较低的粘合剂含量和较低质量的粒状材料,ATB的弹性模量(M-R)显示出应力依赖性。尽管当前日常设计任务中使用的大多数路面分析软件都是基于Burmister的多层弹性理论,其中M-R是主要的基本材料特性,但该软件无法真正处理与应力有关的铺路材料M-R。在这项研究中,采用了《机械化经验性路面设计指南》中的M-R模型来适应ATB的应力相关M-R,并且该模型是通过Abaqus有限元软件及其用户编程的子程序在路面力学分析中实现的。在具有三种类型的ATB的人行道之间比较了关键的人行道响应。还包括使用多层弹性理论并基于阿拉斯加交通与公共设施部推荐的弹性模量获得的路面响应。

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