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Influence of Fiber Type on Low-Temperature Fracture Performance of Presawed Asphalt Mixture Beams

机译:纤维型对铅沥青混合梁低温断裂性能的影响

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摘要

In order to improve the durability of asphalt pavement, low-temperature fracture performance of AC-13 asphalt mixture with different fiber types were studied by three-point bending fracture test under different temperatures and presawed positions. Test results show that the improvement effect of basalt fiber is obvious and stable. The improvement effect of polyester fiber is not obvious to resist I crack, and the resistance effect of I-II compound crack is obvious. Lignin fiber mixed in the asphalt mixture has no obvious effect on improving the crack resistance property under low temperature. Fiber cooperated with asphalt mixture can improve the ability of low-temperature fracture performance, while the improvement degree is effected by fiber type. Low-temperature fracture performance of asphalt mixture improves with the increase of temperature within a certain temperature range. The presawed position has significant effect on the low-temperature fracture performance of asphalt mixture. The larger the horizontal distance of the presawed position and center load is, the stronger the low-temperature fracture performance of asphalt mixture presents.
机译:为了提高沥青路面的耐久性,通过不同温度下的三点弯曲断裂试验研究了具有不同纤维类型的AC-13沥青混合物的低温断裂性能。测试结果表明,玄武岩纤维的改善效果明显且稳定。聚酯纤维的改善效果不明显抵抗I-II复方裂纹的抗性效应显而易见。在沥青混合物中混合的木质素纤维对低温下改善抗裂性质没有明显影响。用沥青混合物配合的纤维可以提高低温断裂性能的能力,而通过纤维型实现改善程度。沥青混合物的低温断裂性能随着在一定温度范围内的温度的增加而改善。导流位置对沥青混合物的低温断裂性能具有显着影响。透视位置和中心载荷的水平距离越大,沥青混合料的低温断裂性能越强。

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