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Investigation of the bond and shear strength between open-graded friction course (OGFC) and dense-graded asphalt concrete

机译:渐进摩擦过程(OGFC)与致密沥青混凝土之间的粘结和抗剪强度研究

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摘要

Open-graded friction course (OGFC) is a commonly used highway pavement material. The relatively low strength and low stiffness of OGFC create a concern on its interfacial bond and shear strength with the underlying dense-graded asphalt concrete (AC). The bond and shear strength may be particularly low if OGFC is directly placed on an existing milled AC layer during resurfacing operation. To address this concern, both the OGFC layer and the underlying AC layer are often resurfaced together in resurfacing operation, with the expectation that better bonding develops between two new layers. However, this practice may result in resource and monetary wastes if the bond and shear strength between the OGFC and milled AC layer are adequate. This paper reports research findings on the bond and shear strength issue based on in situ bond strength test, analysis of traffic-induced tractive force and interfacial shear stress, interfacial shear strength test, and site trials.
机译:渐开摩擦层(OGFC)是一种常用的公路路面材料。 OGFC的相对较低的强度和较低的刚度引起了其与下面的致密渐变沥青混凝土(AC)的界面粘结和剪切强度的担忧。如果将OGFC直接在表面重铺操作期间放置在现有的已碾磨的AC层上,则粘结强度和剪切强度可能会特别低。为了解决这个问题,OGFC层和下面的AC层经常在重铺表面时一起重铺表面,以期在两个新层之间形成更好的粘合。但是,如果OGFC和碾磨后的AC层之间的粘结强度和剪切强度足够,这种做法可能会导致资源和金钱浪费。本文基于原位粘结强度试验,交通诱导的牵引力和界面剪切应力分析,界面剪切强度试验以及现场试验,报告了有关粘结和剪切强度问题的研究成果。

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