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Coefficients of Thermal Contraction and Expansion of Asphalt Concrete in the Laboratory

机译:实验室沥青混凝土的热收缩和膨胀系数

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摘要

The research reported in this paper investigates the coefficient of thermal contraction (CTE) and coefficient of thermal expansion (CTE) of asphalt concrete (AC) under different conditions in the laboratory. As a first step, the CTC and the CTE of AC at different temperatures ranging between -20 and 55℃ were measured using field samples to examine the temperature effect. Then, the difference in the CTC and the CTE values in the vertical and horizontal directions (cross anisotropy) were evaluated using field samples. The influences of air void (AV), aggregate type, and aggregate gradation on the CTC and the CTE values were also investigated using laboratory prepared SuperPave gyratory samples. The deformation measuring devices, LVDTs, were calibrated using a zerodur to eliminate the temperature effect on the LVDTs. Results show that the CTC and the CTE values of AC are nonlinear with temperature and vary with aggregate type. However, gradation of aggregate and AV of sample do not affect the CTC and the CTE values significantly. The findings of this paper are highly expected to be useful in calculating the temperature-induced stress in AC using any design/analysis tool.
机译:本文报道的研究在实验室中研究了沥青混凝土(AC)在不同条件下的热收缩系数(CTE)和热膨胀系数(CTE)。第一步,使用现场样品测量-20至55℃之间不同温度下AC的CTC和CTE,以检查温度影响。然后,使用田间样品评估CTC和CTE值在垂直和水平方向(正交各向异性)上的差异。还使用实验室制备的SuperPave旋转样品研究了气孔(AV),骨料类型和骨料等级对CTC和CTE值的影响。使用zerodur校准了变形测量设备LVDT,以消除温度对LVDT的影响。结果表明,AC的CTC和CTE值随温度呈非线性,并随聚集体类型而变化。但是,样品的聚集体和AV的等级不会显着影响CTC和CTE值。高度期望本文的发现对使用任何设计/分析工具计算交流电中的温度引起的应力有用。

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