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Temperature sensitivity of foamed asphalt mix stiffness: field and lab study

机译:泡沫沥青混合料刚度的温度敏感性:现场和实验室研究

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Knowledge of the temperature sensitivity of foamed asphalt stiffness is very important in mix and structural design, field non-destructive testing and advanced research. However, this subject has not been studied extensively, especially the effects of the stress state on the temperature sensitivity, which is essential to understand the behavior of weakly bonded granular materials. This paper first presents triaxial resilient modulus testing results of foamed asphalt treated materials with various asphalt contents at various temperatures. General observations are made in terms of the effects of the bulk stress, deviator stress, temperature and their interactions. Based on these observations, the temperature sensitivity coefficient of foamed asphalt stiffness is denned and a simplified model to predict foamed asphalt mix stiffness at any triaxial stress state and temperature is proposed and validated. A procedure to normalize back-calculated resilient modulus to a standard temperature is also presented. The essential step of this procedure is to estimate the temperature sensitivity coefficient based on the field test results at various temperatures. Finally, an example is presented comparing the stiffness of a foamed asphalt material over two years. It was found that the stiffness did not change significantly over the two years period, despite the accumulation of traffic loading.
机译:在混合和结构设计,现场无损检测和高级研究中,了解泡沫沥青刚度的温度敏感性非常重要。但是,该主题尚未得到广泛研究,尤其是应力状态对温度敏感性的影响,这对于理解弱结合的颗粒材料的行为至关重要。本文首先介绍了不同温度下各种沥青含量的泡沫沥青处理材料的三轴弹性模量测试结果。根据整体应力,偏应力,温度及其相互作用的影响进行一般观察。基于这些观察,确定了泡沫沥青刚度的温度敏感性系数,并提出了一个简化的模型来预测在任何三轴应力状态和温度下的泡沫沥青混合料刚度。还介绍了将反算的弹性模量标准化为标准温度的过程。此过程的基本步骤是根据各种温度下的现场测试结果估算温度灵敏度系数。最后,给出了一个比较泡沫沥青材料两年的刚度的例子。结果发现,尽管交通负荷不断增加,但刚度在两年期间并没有显着变化。

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