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首页> 外文期刊>Advances in civil engineering >Research of Method for Improving Antifreeze-Thaw Performance Based on Asphalt Mixture Freeze-Thaw Damage Development Process
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Research of Method for Improving Antifreeze-Thaw Performance Based on Asphalt Mixture Freeze-Thaw Damage Development Process

机译:基于沥青混合滤压损伤开发过程改善防冻釜性能的方法研究

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摘要

To improve the antifreeze-thaw performance of asphalt pavement in the seasonal freezing regions, the temperature and the time of freeze-thaw test were redesigned based on the climatic characteristics of the regions, and the splitting tensile strength tests were carried out to determine the low-temperature performance of the asphalt mixture under the influence of the gradation and the asphalt-aggregate ratio. A mathematical model was built to investigate the freeze-thaw damage law. According to the test results of splitting tensile strength of the asphalt mixture under freeze-thaw cycles, the probabilistic damage variable of the asphalt mixture was redefined and a physical probability model was built to analyse the freeze-thaw damage. Based on the freeze-thaw damage development process and the mechanism of the asphalt mixture, the effective measures to improve the antifreeze-thaw performance were provided and demonstrated through the correlations among the damage parameters (the shape parameter α, the scale factor λ, and the gradient factor ν) and the freeze-thaw resistance of the asphalt mixture. The test results showed that the splitting tensile strength decreased with the increase of the number of the freeze-thaw cycles. With the same gradation, the splitting freeze-thaw damage degree of the asphalt mixture with 5.8% asphalt-aggregate ratio is about 6% less than others after the 18th freeze-thaw cycle. The freeze-thaw resistance increases with the asphalt-aggregate ratio. With the same asphalt-aggregate ratio, the splitting freeze-thaw damage degree of S-grade mixtures is about 11.8% higher than that of Z-grade mixtures. S-grade mixtures have positive effects on the freeze-thaw resistance. The results suggest new measures for further investigation on the design and maintenance of the asphalt mixture in the seasonal freezing regions.
机译:为了改善季节性冷冻区中沥青路面的防冻剂 - 解冻性能,基于区域的气候特性重新设计冻融试验的温度和时间,并进行分裂拉伸强度试验以确定低电平 - 沥青混合物在梯度影响下的温度和沥青骨料比率的温度。建立了数学模型来调查冻融损伤法。根据冻融循环下的沥青混合物的抗拉强度的试验结果,重新定义沥青混合物的概率损伤变量,建立了物理概率模型,分析了冻融损伤。基于冻融损伤的损伤开发过程和沥青混合的机制,提供了改善防冻剂性能的有效措施,并通过损伤参数(形状参数α,刻度系数λ,和梯度因子Ⅳ)和沥青混合料的冻融抗性。试验结果表明,随着冻融循环循环的数量的增加,分裂拉伸强度降低。通过相同的灰度,在第18次冻融循环之后,沥青混合料与5.8%沥青混合物的分裂损伤损伤程度比其它约为6%。冻融电阻随沥青骨料比率而增加。具有相同的沥青骨料比,S级混合物的分裂抗冻性损伤程度高于Z级混合物的约11.8%。 S级混合物对冻融抗性具有积极影响。结果表明,进一步调查了季节性冷冻区中沥青混合料的设计和维护的新措施。

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