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Effect of laboratory compaction on the viscoelastic characteristics of an asphalt mix before and after rapid freeze-thaw cycles

机译:快速冻融循环前后实验室压实对沥青混合料粘弹性特性的影响

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Environmental conditions, the rate of loading and mixture properties are the most important factors that affect the complex modulus (|E*|) values. The effect of environmental freeze-thaw (FT) cycles on viscoelastic properties of asphalt base materials has not been investigated properly yet. At the bottom of the asphalt base layer in a pavement structure, there is higher tensile strain due to traffic, and it usually has a higher air voids content which is mostly due to a poor compaction during construction. Asphalt mixture with a nominal maximum aggregate size of 20 mm, called "Grave Bitume" (GB20) which is normally used as a base layer in Quebec, was used in this study. The main objective of this study is to compare the complex modulus test results of the dry, partially saturated, and FT conditioned specimens with different compaction levels. Three different air voids (2%, 3.5%, and 7%) are targeted in this project. The saturated specimens are subjected to complex modulus test carried out using the Direct Tension-Compression test. The rheological model 2S2P1D is implemented to simulate the behavior of the mixes according to various temperatures and frequencies. The results indicate that the compaction level significantly affects the behavior of the mix after a large number of rapid FT cycles. The effect of FT cycles on viscoelastic behavior of the mix is added to the Witczak formula in order to improve the prediction of the service life of asphalt GB20 base mix. Comparison between the laboratory determined and predicted data indicate that the relative bias in the modulus prediction after 300 FT cycles, especially due to the high percentage of voids. This can be eliminated by applying the improved equation to the predicted values.
机译:环境条件,加载速率和混合物性质是影响复数模量(| E * |)值的最重要因素。尚未适当研究环境冻融(FT)循环对沥青基础材料粘弹性的影响。在路面结构中的沥青基层底部,由于行车而具有较高的拉伸应变,并且通常具有较高的气孔含量,这主要是由于施工期间的压实性差。在这项研究中,使用了标称最大骨料最大为20毫米的沥青混合物,称为“坟墓沥青”(GB20),该混合物通常用作魁北克的基础层。这项研究的主要目的是比较具有不同压实度的干燥,部分饱和和FT条件的标本的复模量测试结果。此项目的目标是三个不同的空隙(分别为2%,3.5%和7%)。使用直接拉伸-压缩试验对饱和的样品进行复数模量试验。流变模型2S2P1D用于根据各种温度和频率模拟混合物的行为。结果表明,在大量快速FT循环后,压实水平显着影响混合物的性能。将FT循环对混合料的粘弹性行为的影响添加到Witczak公式中,以改善对GB20沥青混合料使用寿命的预测。实验室确定的数据和预测的数据之间的比较表明,在300 FT循环后,模量预测中的相对偏差,尤其是由于空隙百分比较高。通过将改进的公式应用于预测值可以消除这种情况。

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