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Determination of low-temperature crack control parameter of binding asphalt materials based on gray correlation analysis

机译:基于灰色关联分析的沥青结合料低温裂缝控制参数的确定

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Convenient evaluation indexes for the low-temperature cracking of matrix asphalt, asphalt mastic, and asphalt-fine aggregate combination under different low-temperature conditions are determined. On the basis of bending failure test, the stress-strain curves of the three asphalt materials under different low-temperature conditions are ascertained to obtain the critical value of the bending strain energy density, which can effectively characterize the low-temperature crack resistance. On the basis of gray relational analysis, the correlation between the critical value of the bending strain energy density of the above-mentioned materials and their ultimate bending failure strength and strain under low-temperature conditions is determined, and the reasonable strength or strain index of different materials at dissimilar temperatures is acquired. Experimental results show that the three asphalt materials exhibit different low-temperature performance changes due to dissimilar material ratios. The changes of asphalt mastic and matrix asphalt are similar, whereas the change of the asphalt-fine aggregate combination differs from those of the two. Gray correlation analysis results show that, for the matrix asphalt and asphalt mastic, the critical fitting effect of ultimate bending failure strength with the bending strain energy density is better at 0 degrees C to -10 degrees C. Thus, the ultimate bending failure strength can be reasonably used as the low-temperature cracking control index. Under the condition of -10 degrees C to -30 degrees C, the ultimate bending failure strain can be considered the evaluation index of low-temperature cracking. For the asphalt-fine aggregate combination, the deformation capacity can be suitably used as the evaluation method of low-temperature cracking in the entire low-temperature range of 0 degrees C to -30 degrees C. These results simplify the evaluation method of low-temperature cracking performance of asphalt materials, which is important for improving the low-temperature performance of these materials. (C) 2019 Elsevier Ltd. All rights reserved.
机译:确定了在不同低温条件下基体沥青,沥青胶泥和沥青-细骨料组合物低温开裂的简便评价指标。在弯曲破坏试验的基础上,确定了三种沥青材料在不同低温条件下的应力-应变曲线,得出了弯曲应变能密度的临界值,可以有效地表征其低温抗裂性。在灰色关联分析的基础上,确定了上述材料在低温条件下的弯曲应变能密度的临界值与其极限抗弯破坏强度和应变之间的相关性,得出了合理的强度或应变指标。获得了不同温度下的不同材料。实验结果表明,由于不同的材料比,三种沥青材料表现出不同的低温性能变化。沥青胶泥和基体沥青的变化相似,而沥青-细骨料组合的变化与两者不同。灰色关联分析结果表明,对于基体沥青和沥青胶泥,极限弯曲破坏强度与弯曲应变能密度的临界拟合效果在0℃至-10℃时较好。合理用作低温裂化控制指标。在-10℃至-30℃的条件下,极限弯曲破坏应变可以认为是低温裂纹的评价指标。对于沥青-细骨料组合,变形能力可适合用作0°C至-30°C整个低温范围内的低温开裂评估方法。这些结果简化了低温沥青的评估方法。沥青材料的高温开裂性能,这对于改善这些材料的低温性能很重要。 (C)2019 Elsevier Ltd.保留所有权利。

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