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首页> 外文期刊>Proceedings of the Institution of Civil Engineers. Transport >Fast falling weight deflectometer as new tool to perform accelerated pavement testing
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Fast falling weight deflectometer as new tool to perform accelerated pavement testing

机译:快速下降的重量偏转仪作为进行加速路面测试的新工具

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摘要

The development of the falling weight deflectometer (FWD) in the late 1970s made it possible to determine quickly the in situ modulus and critical stresses/strains in pavement structures, which are generally considered the most important input for the 'mechanistic' part of the mechanistic-empirical pavement design method. In 2015, the newly designed FastFWD was released and provided the opportunity to speed up the testing procedure and overall productivity significantly. The increased rate of loading prompted the current study into the possibility of performing in situ accelerated pavement testing to predict pavement deterioration, and to fill the gap between the heavy vehicle simulator and small-scale laboratory test methods. Numerous experimental sequences and test sites have been initiated since the start of the research; in the last of these, 1.6 million load applications were applied and the dynamic modulus master curve was back-calculated and used to filter out the viscoelastic response of the asphalt layer caused by temperature changes within the material from the repeated loading. Based on the findings of this research, an incremental-recursive fatigue model has been used to predict accurately the reduction in asphalt modulus as a function of any combination of loads and temperatures for a known material.
机译:在20世纪70年代后期的下降重量偏转仪(FWD)的发展使得可以快速确定路面结构中的原位模量和临界应力/菌株,这通常被认为是机械的“机械”部分的最重要的输入 - 专业路面设计方法。 2015年,新设计的FastFWD被发布并提供了机会,可以显着加快测试程序和整体生产力。增加的装载率促使目前的研究进入原位加速路面测试以预测路面劣化,并填补重型车辆模拟器和小规模实验室试验方法之间的间隙。自研究开始以来已经启动了许多实验序列和测试部位;在最后的最后一个中,施加了160万负载应用,并回计算动态模量曲线并用于过滤滤除由重复载荷的材料内的温度变化引起的沥青层的粘弹性响应。基于本研究的结果,递归疲劳模型已被用于预测沥青模量的准确降低,作为已知材料的任何负载和温度的函数的函数。

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