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Macrotexture characterisation of laboratory-compacted hot-mix asphalt specimens using a new asphalt polishing machine

机译:使用新型沥青抛光机表征实验室压实的热拌沥青样品的宏观纹理

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摘要

Highway agencies continuously strive to maintain adequate surface friction (or skid resistance) at the interface between vehicle tyres and pavement surfaces to enhance the available friction during all phases of a pavement life time. Conventionally this is attained by monitoring and ultimately overlaying the pavement surface deficiencies. However, this practice is an inactive approach in solving the problem. A more proactive approach would be to carry out the necessary hot-mix asphalt testing in a laboratory setting before construction or during its initial mix design stage. Towards this objective the polishing behaviour of laboratory-prepared specimens has been investigated in terms of friction and macrotexture values. The potential relationship between friction and texture measurements has also been considered. The new asphalt polisher showed a good degree of repeatability. The macrotexture was found to be a significant factor in controlling the frictional properties of asphalt surfaces which was shown by the relatively high correlation between the mean texture depth (MTD) and the British pendulum number (BPN) values. Good correlation was also found when correlating Delta BPN and Delta MTD for each job mix formula and each group based on their polishing susceptibility. Test results of this study that are based on bituminous surfaces made from aggregates produced in Ohio could enrich the Ohio Department of Transportation material specification database for future usage.
机译:公路部门不断努力在车辆轮胎与人行道表面之间的界面处保持足够的表面摩擦力(或防滑性),以在人行道使用寿命的所有阶段中增加可用的摩擦力。通常,这是通过监视并最终覆盖人行道表面缺陷来实现的。但是,这种做法不是解决问题的有效方法。一种更主动的方法是在实验室环境中,施工之前或初期混合设计阶段进行必要的热混合沥青测试。为了达到这个目的,已经根据摩擦和宏观纹理值研究了实验室制备的样品的抛光行为。还考虑了摩擦力和织构测量之间的潜在关系。新型沥青抛光机显示出良好的可重复性。人们发现,宏观纹理是控制沥青表面摩擦性能的重要因素,这通过平均纹理深度(MTD)和英国摆数(BPN)值之间的较高相关性来表明。当根据每种抛光配方和各组的抛光敏感性将Delta BPN和Delta MTD相关时,也发现了良好的相关性。基于俄亥俄州生产的骨料制成的沥青表面的这项研究的测试结果可以丰富俄亥俄运输部的材料规格数据库,以备将来使用。

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