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Development and Field Experience of Performance-Based Low Permeability Asphalt Mixture Used to Overlay Bridge Decks

机译:基于性能的低渗透沥青混合料用于桥面铺装的开发及现场经验

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Asphalt mixtures on bridge decks often do not last as intended. Raveling, delamination, and potholing are more frequently observed on bridge decks as compared to their adjacent asphalt surfaces. The main cause of such differences in performance could be simply due to inability to achieve proper in-place density by being restricted to static only compaction mode and reduced temperature. Compaction temperature is limited to a certain range to avoid melting any underlying waterproofing membranes that could cause so called "slippage planes." Compaction mode and temperature restrictions could further complicate the projects when the distance between the job site and production plant is far away. This paper provides information on the development of a performance-based low permeability overlay mix to protect bridge decks against the penetration of water and de-icing chemicals. This paper also provides steps employed to develop a performance-based requirement focused on permeability and long-term fatigue behaviour under extreme repetitive stresses that would be expected from heavily loaded traffic coupled with extreme temperatures. Production and paving experience with the low permeability mix is also included, as well as more field performance of a trial section in Southern Ontario.
机译:桥面甲板上的沥青混合料通常不会达到预期的使用寿命。与桥面相邻的沥青表面相比,桥面甲板上更容易出现划痕,分层和凹坑现象。这种性能差异的主要原因可能是由于无法通过限制于仅静态的压实模式和降低的温度而无法获得适当的就地密度。压实温度限制在一定范围内,以避免熔化任何可能引起所谓“滑移面”的底层防水膜。当工作现场和生产工厂之间的距离很远时,压实模式和温度限制可能会使项目更加复杂。本文提供了有关基于性能的低渗透性铺面混合料的开发信息,以保护桥面板免受水和除冰剂的渗透。本文还提供了用于开发基于性能的要求的步骤,这些要求着重于在极端重复应力下的渗透性和长期疲劳行为,这是重载交通和极端温度所期望的。还包括使用低渗透率混合物的生产和摊铺经验,以及在安大略省南部的试验区的更多现场表现。

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