首页> 外文会议>RILEM International Symposium on Testing and Characterization of Sustainable and Innovative Bituminous Materials >Effects on Bonding of Anti-reflective Cracking Solutions at the Top Bituminous Interface of a Small Airport Pavement: A Laboratory and Modeling Study
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Effects on Bonding of Anti-reflective Cracking Solutions at the Top Bituminous Interface of a Small Airport Pavement: A Laboratory and Modeling Study

机译:小机场路面顶部沥青界面粘接对抗反射裂解溶液的影响:实验室和建模研究

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摘要

The maintenance of bituminous airport pavements is of high concern when the limited available time for interventions and the performance effectiveness of the adopted materials are considered. In many cases, due to their former military vocation, small airport pavements have robust, sound and durable foundations that seldom require deep interventions of maintenance. Thus, it is more often needed to rehabilitate the pavement bituminous surface layers to restore the functional characteristics of the runaway and to protect the bottom layers from water leaching through the surface damages (e.g. cracks). This paper shows an example of airport pavement maintenance that was designed to rehabilitate the wearing course of a cracked bituminous structure that was proven to have sufficient bearing capacity. In order to prevent the reflection of cracks on the new layer, the effects of using both a geosynthetic net and a Stress Absorbing Membrane Interlayer (SAMI) were investigated at the old-new materials interface. The effects of debonding and the potential risk of slippage or delamination of the new wearing course were assessed by means of laboratory direct shear tests and multilayer elastic pavement system modeling.
机译:当考虑有限的可用时间和所采用材料的性能有效性时,沥青机场路面的维护具有很高的关注点。在许多情况下,由于他们的前军事职业,小机场路面具有强大,声音和耐用的基础,很少需要深入的维护干预措施。因此,更常常需要恢复路面烧蚀表面层以恢复失控的功能特性,并保护底层通过表面损坏(例如裂缝)免受水浸出的水浸出。本文展示了机场路面维护的一个例子,旨在恢复裂缝沥青结构的佩戴过程,被证明具有足够的承载力。为了防止裂缝对新层的反射,在旧材料界面上研究了使用土工合成网和应力吸收膜中间层(SAMI)的影响。通过实验室直接剪切试验和多层弹性路面系统建模评估了剥离的影响和新的佩戴课程的潜在风险或新的佩戴课程的潜在风险。

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