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Interfacial Shear Properties of Geosynthetic Interlayered Asphalt Overlays

机译:土工合成材料沥青覆盖层的界面剪切特性

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Hot mix asphalt (HMA) overlays are the most common and cost effective rehabilitation technique available to restore the serviceability of existing distressed pavement surfaces. It is often observed that within a short span of placing HMA overlays, the distress in the existing pavement surface reflect to the new overlay surface and this process is termed as reflective cracking. To reduce the effect of reflection cracks and to improve the performance of HMA overlays, the geosynthetic interlayers are placed at the interface of old and new pavement layers. The current study aims to understand the interfacial shear properties of geosynthetic interlayered HMA overlays placed on a distressed pavement surface. The interfacial shear properties are determined in the laboratory using a large scale interface shear test apparatus. The geosynthetic interlayers used in the current study are biaxial geogrids with varying material properties and aperture sizes and a geo-jute mat. The results indicate a reduction in the interfacial bond strength (shear) between the old and new pavement layers with the inclusion of geosynthetic interlayers at the interface zone. Among different types of geosynthetic interlayers used, the polymer modified polyester grid has shown least reduction (17%) in the interface bond strength. The maximum reduction of 46% in the interface bond strength was observed in the geo-jute mat interlayers.
机译:热拌沥青(HMA)铺面是最常用和最具成本效益的修复技术,可用于恢复现有不良路面的可使用性。经常观察到,在放置HMA覆盖层的短时间内,现有路面中的窘迫会反射到新的覆盖层表面,因此该过程称为反射裂缝。为了减少反射裂缝的影响并改善HMA覆盖层的性能,将土工合成材料中间层放置在新旧路面层的界面处。当前的研究旨在了解放置在不良路面上的土工合成层状HMA覆盖层的界面剪切特性。界面剪切性能是在实验室中使用大型界面剪切测试仪确定的。当前研究中使用的土工合成中间层是具有不同材料特性和孔径尺寸的双轴土工格栅以及土工黄麻垫。结果表明,新旧路面层之间的界面粘结强度(剪切)降低,并且在界面区域包含了土工合成中间层。在使用的不同类型的土工合成中间层中,聚合物改性的聚酯网格在界面结合强度方面的降低最小(17%)。在黄麻垫中间层中观察到界面结合强度最大降低了46%。

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