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Experimental Study on the performance of Bond-breaking Layer in Reducing Friction and Improving Anti-erosion

机译:粘结层在减少摩擦和改善抗侵蚀中的性能实验研究

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This research explored the variation of bond-breaking effect with variety of bond-breaking layers installed between the concrete pavement surface slabs and the lean concrete (LCB) base, in order to offer parameters for structure analysis of pavements with bond-breaking layers and to optimize the selection of bond-breaking layers for the practical road engineering projects. This research tested the bonding stresses and the frictional forces at slab-base interface of pavements under different bond-breaking condition, as well as the anti-erosion performance of base course, via the anti-erosion tests in laboratory and the field tests for mechanical performance of slab-base interface treated with different bond-breaking layers in some highway projects of Hunan and Guangdong Provinces. Bond-breaking media applied in this research include the 3cm asphalt concrete (AC), 1cm emulsified asphalt slurry seal (EASS), geotextile and emulsion wax curing agent (EWCA). The findings from the field tests for bonding stress between slab-base layers indicated that EASS and EWCA did better than geotextile in reducing friction or bonding stress between slab-base layers. And the findings from the anti-erosion tests indicated that: under the same conditions, specimens covered with geotextile did far better than specimens brushed with asphalt on the surface in resisting erosion, and specimens covered with geotextile or brushed with asphalt did far better than no bond-breaking layer in resisting erosion. The mechanical performance of slab-base interface with different bond-breaking media derived from this research offers scientific reference to pavement design and construction control in the practical road engineering projects.
机译:本研究探讨了在混凝土路面表面板和贫混凝土(LCB)基部之间安装的各种粘接粘接层的变化,以便为带粘结层和粘结层的路面结构分析提供参数。优化实用道路工程项目的粘接层的选择。该研究通过实验室中的抗侵蚀测试和基础路线的抗侵蚀性能测试了粘接应力和摩擦力的粘接应力和摩擦力,以及基础路线的抗侵蚀性能,以及机械的野外试验在湖南和广东省的一些公路项目中用不同粘接层处理的平板基础界面的性能。应用在本研究中的粘结介质包括3CM沥青混凝土(AC),1CM乳化沥青浆料密封(EAS),土工织物和乳液蜡固化剂(EWCA)。用于粘接粘接粘合应力的现场测试的发现表明,在减少平板基层之间的摩擦或粘接应力时,EAS和EWCA的eass和EWCA的表现优于土工织物。抗侵蚀试验的结果表明:在相同的条件下,用土工织物覆盖的标本比抗腐蚀的表面上用沥青刷涂的标本更好,而用土工织物覆盖或用沥青刷涂的标本比没有更好粘合层抵抗侵蚀。与本研究的不同粘结介质的平板基界面的机械性能为实际道路工程项目中的路面设计和施工控制提供了科学参考。

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