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Study on Cooling Effect and Pavement Performance of Thermal-Resistant Asphalt Mixture

机译:耐热沥青混合料的降温效果及铺装性能研究

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To reduce the temperature of asphalt pavement and improve the antirutting performance of asphalt mixture, a thermal-resistant asphalt mixture (TRAM) was produced, in which a certain proportion of mineral aggregate was replaced by ceramic (CE) or floating beads (FB) featuring low thermal conductivity. Firstly, a parallel plate test was developed to test the thermal conductivity of asphalt mixture added with different thermal-resistant materials. Secondly, the illumination test system was designed to study the visual cooling effect of different TRAM by imitating the natural environment. Finally, the effect of different thermal-resistant materials on asphalt pavement performance was evaluated. The results show that the addition of thermal-resistant materials can reduce the thermal conductivity and the temperature of asphalt mixture. The cooling effect of CE75 and CE100 (coarse aggregate substituted by 75% and 100% CE, respectively) is superior to other aggregates. The temperature reduction rates of CE75 and CE100 reache 6.6°C and 6.8°C, respectively. For FB50 and FB75 (fine aggregate substituted with 50 and 75% FB, respectively), the cooling effect of them reaches 3.9°C and 4.5°C, respectively. In addition, the CE and FB can improve the antirutting performance of asphalt mixture by reducing the temperature inside the pavement. The high-temperature performance of CE75 and FB75 is the best. With the increase of thermal resistance materials, the low-temperature cracking resistance of asphalt mixture decreases gradually. The failure strain of mixture added with 100% thermal resistance materials is close to the lower limit of Chinese specification. The water stability of different TRAM changes with various test methods. Taking into account the results of pavement performance and the cooling effect, the substitution proportion of CE and FB for TRAM is proposed as 50%∼75%, respectively.
机译:为了降低沥青路面的温度并提高沥青混合料的抗车辙性能,生产了一种耐热沥青混合料(TRAM),其中一定比例的矿物骨料被陶瓷(CE)或浮珠(FB)代替。导热系数低。首先,开发了平行板试验来测试添加了不同耐热材料的沥青混合料的导热系数。其次,设计了照明测试系统,通过模拟自然环境来研究不同TRAM的视觉冷却效果。最后,评估了不同耐热材料对沥青路面性能的影响。结果表明,添加耐热材料可以降低沥青混合料的导热系数和温度。 CE75和CE100(分别由75%和100%CE代替的粗骨料)的冷却效果优于其他骨料。 CE75和CE100的降温速率分别达到6.6°C和6.8°C。对于FB50和FB75(分别用50%和75%的FB代替细骨料),它们的冷却效果分别达到3.9°C和4.5°C。另外,CE和FB可以通过降低人行道内部的温度来改善沥青混合料的抗车辙性能。 CE75和FB75的高温性能最佳。随着耐热性材料的增加,沥青混合料的低温抗裂性逐渐降低。添加了100%耐热材料的混合物的破坏应变接近中国规范的下限。不同的TRAM的水稳定性会随各种测试方法而变化。考虑到路面性能和冷却效果的结果,CE和FB替代TRAM的比例分别建议为50%〜75%。

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