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Performance testing of asphalt paving mixtures for hot condition using tension-compression test

机译:张力压缩试验的热条件沥青铺设混合物的性能测试

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摘要

In this paper, laboratory experiments were conducted on two different asphalt mixes, one using the Marshall mix design method (MMD) and the second using modified Marshall mix design (3M) method. The 3M method is based on the incorporation of two factors, the new asphalt binders (performance grade) and the Superpave gyratory compactor (SGC) as in Superpave mix design method, into the traditional MMD method. All specimens had the same mixtures of aggregate gradation incorporated with two different compaction methods and two asphalt grades using two different classification methods: asphalt cement binder (B60-70) based on the penetration test (Pen system) and PG 70-10 based on performance grade system (PG). However, there were some errors at low temperature (-25, -10 degrees C) and high temperature (54 degrees C), so these values may be discarded. The tension-compression complex modulus test vertical bar E*vertical bar is dependent on temperature and loading frequency. Thus, the results of this test will give a more accurate representation of the absolute value of the tension-compression complex modulus test vertical bar E*vertical bar that defines the elastic properties of a linear viscoelastic material subjected to a sinusoidal loading. In addition, 2-complex modulus (E*) and phase angles (Phi E*) in the test have been measured at temperatures of -25, -10, -5, 10, 25, 35 and 54 degrees C as well as frequencies of 25, 10, 5, 1, 0.5 and 0.1 Hz. The value of the dynamic modulus reflects the stiffness of the mixture and its resistance to deformation at a designated frequency and temperature. The results show an improvement in the vertical bar E*vertical bar in the modified 3M mix over the traditional MMD mix. The 3M method using asphalt binder PG 70-10 and gyratory compactor (SGC) as in Superpave mix design method, improves the vertical bar E*vertical bar of the asphalt mixture in HA climate. As well, intrinsic characteristics related to binder properties, aggregate gradation and compaction method in HA climate have the most significant effect on the predicted vertical bar E*vertical bar.
机译:本文在两种不同的沥青混合物上进行了实验室实验,使用Marshall混合设计方法(MMD)和第二种使用改进的Marshall Mix设计(3M)方法。 3M方法基于掺入两种因素,新的沥青粘合剂(性能等级)和超级助剂压实机(SGC),如SuperPave混合设计方法,进入传统的MMD方法。所有标本都具有与两种不同的压实方法和两种不同的分类方法的两种不同压实方法和两种沥青等级的相同混合物:沥青水泥粘合剂(B60-70)基于性能的渗透试验(笔系统)和PG 70-10等级系统(PG)。然而,在低温(-25,-10℃)和高温(54℃)时存在一些误差,因此可以丢弃这些值。张力 - 压缩复数模量试验垂直杆E *垂直杆取决于温度和装载频率。因此,该测试的结果将提供更准确的张力 - 压缩复数模量试验垂直条E *垂直条的绝对值表示,其限定了经受正弦载荷的线性粘弹性材料的弹性性质。另外,测试中的2个复模量(E *)和相位角(PHI E *)在-25,20,5,10,25,35和54摄氏度以及频率的温度下测量25,10,5,1,0.5和0.1Hz。动态模量的值反映了混合物的刚度及其在指定频率和温度下变形的抵抗力。结果表明,在传统的MMD混合中,改性3M混合中的垂直条E *垂直条的改进。使用沥青粘合剂PG 70-10和旋转压实机(SGC)的3M方法,如SuperPave混合设计方法,改善了HA气候中沥青混合物的垂直条E *垂直条。同样,与HA气候中的粘合剂性质,骨料灰度和压实方法相关的内在特征对预测的垂直条E *垂直杆具有最大的影响。

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