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Effectiveness of Two Reflection Crack Attenuation Techniques in Asphalt Pavements

机译:沥青路面两种反射裂缝衰减技术的有效性

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The performance of new asphalt concrete overlays is often jeopardized by existing cracks in the pavement to be rehabilitated. These existing cracks propagate, or reflect, through the new asphalt concrete to the surface of the new overlay. Once reflection cracks appear on the surface of the new pavement, water and debris can enter the pavement structure affecting pavement strength and reducing the life of the overlay. Therefore, reducing the rate at which these reflection cracks propagate to the surface of the pavement is desirable. The research reported in this paper studied the effectiveness of two new reflection crack attenuation techniques. One technique is a grid reinforcing system, the other, a polymer modified asphalt-rich interlayer system. Each system included a control section where no reflective crack attenuation treatment was used. Performance of the two systems was evaluated for six years by measuring cracking semi-annually and comparing this to the cracking present before rehabilitation. After six years significant differences in performance between the controls and the attenuation systems have appeared. Results of this research provide new information regarding tools that may help extend the life of asphalt overlays placed on cracked substrate pavements.
机译:新沥青混凝土外墙的性能通常会因路面中存在的待修复裂缝而受到损害。这些现有的裂缝通过新的沥青混凝土传播或反射到新覆盖层的表面。一旦新路面的表面出现反射裂缝,水和碎屑就会进入路面结构,从而影响路面强度并缩短覆盖层的使用寿命。因此,期望降低这些反射裂纹向人行道表面传播的速度。本文报道的研究研究了两种新的反射裂纹衰减技术的有效性。一种技术是网格增强系统,另一种是聚合物改性的富含沥青的中间层系统。每个系统都包括一个不使用反射裂纹衰减处理的控制部分。通过每半年测量一次裂纹并将其与修复前出现的裂纹进行比较,对这两个系统的性能进行了六年的评估。六年后,控件和衰减系统之间的性能出现了显着差异。这项研究的结果提供了有关工具的新信息,这些工具可以帮助延长铺在开裂的基层路面上的沥青覆盖层的寿命。

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