Investigating the Tensile Strength and Permanent Deformation of Asphalt Concrete using Different Gradation Methods

M. Junaid, U. Gazder
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Abstract

The current study emphasizes on the evaluation of the effect of aggregate skeleton and temperature variation on the tensile strength and permanent deformation of asphalt concrete. The aggregate skeleton was designed within the Pakistan's National Highway Authority Class-B (NHA-B) gradation limits by utilizing the gradation concepts of Conventional method and Bailey method. Modified Marshall method was practiced for determining Optimum Binder Content (OBC). Superpave Gyratory Compactor was utilized for preparation of specimens for performance testing. Indirect Tensile Strength (ITS) test and Hamburg Wheel Tracker (HWT) test were conducted on both types of asphalt mixtures at 25°C and 40 °C. Results declared that both aggregate skeleton and temperature affect the tensile strength and permanent deformation of asphalt concrete. Bailey gradation bituminous mixtures disclosed more defiant behavior to tensile and permanent deformation compared to Conventional gradation bituminous mixtures. Moreover, for both gradation bituminous mixtures, better performance of asphalt concrete in terms of tensile strength and permanent deformation was observed at low temperature compared to high temperature.
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不同级配方法对沥青混凝土抗拉强度和永久变形的影响
目前的研究重点是评价骨料骨架和温度变化对沥青混凝土抗拉强度和永久变形的影响。骨料骨架是在巴基斯坦国家公路管理局b级(NHA-B)级配限制内设计的,采用了常规方法和贝利方法的级配概念。采用改良Marshall法测定最佳粘结剂含量(OBC)。采用Superpave旋转压实机制备性能试验试样。分别在25°C和40°C条件下对两种沥青混合料进行了间接抗拉强度(ITS)试验和汉堡车轮跟踪器(HWT)试验。结果表明,骨料骨架和温度对沥青混凝土的抗拉强度和永久变形均有影响。与常规级配沥青混合料相比,贝利级配沥青混合料对拉伸和永久变形表现出更强的抵抗性。此外,对于两种级配沥青混合料,低温下的沥青混凝土在抗拉强度和永久变形方面的性能优于高温。
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