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Verification of the applicability of the time-temperature superposition principle to interface shear stiffness and strength of GlasGrid-reinforced asphalt mixtures

机译:验证时间-温度叠加原理对GlasGrid增强沥青混合料的界面剪切刚度和强度的适用性

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摘要

This paper aims to verify the applicability of the time-temperature superposition (t-TS) principle to the interface shear performance of GlasGrid-reinforced asphalt specimens under monotonic and random cyclic shear loading. A double shear tester and a direct shear device, the Modified Advance Shear Tester that has the capability to apply confining loads, were used to fulfil this objective. Double-layered asphalt specimens were fabricated and reinforced using two types of fibreglass grids with 12.5-mm and 25-mm grid openings, respectively. PG 64-22 asphalt binder was used as the tack coat when the smaller opening grid was used, and SS-1 emulsion was applied as the tack coat when the larger opening grid was used. Approaches that employ the mixture dynamic modulus, tack coat residue complex modulus, and interface shear modulus shift factors for shifting the shear test results and constructing shear master curves were evaluated. The results show that the t-TS principle is applicable to the shear strength and shear stiffness of GlasGrid-reinforced asphalt concrete specimens if the right shift factor function is used.
机译:本文旨在验证时间-温度叠加(t-TS)原理在单调和随机循环剪切载荷下对GlasGrid增强沥青样品的界面剪切性能的适用性。为了实现这一目标,使用了双剪力测试仪和直接剪力仪,即能够施加约束载荷的改进型预剪力测试仪。使用两种类型的玻璃纤维格栅(分别具有12.5mm和25mm的格栅开口)制造和加固双层沥青标本。当使用较小的开口格栅时,将PG 64-22沥青粘合剂用作粘性涂层,而在使用较大的开口格栅时,将SS-1乳液用作粘性涂层。评估了采用混合动力模量,粘性涂层残余复数模量和界面剪切模量位移因子来移动剪切试验结果和构建剪切主曲线的方法。结果表明,如果使用正确的移位因子函数,则t-TS原理适用于GlasGrid增强的沥青混凝土样品的抗剪强度和抗剪刚度。

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