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Experimental Study Of Waterproof Membranes On Concrete Deck: Interface Adhesion Under Influences Of Critical Factors

机译:混凝土桥面防水膜的试验研究:关键因素影响下的界面粘结

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摘要

Waterproof membrane (WM) has been used as an interlayer between asphalt concrete (AC) overlay and concrete deck of bridges for the purpose of waterproof and interface adhesion. The interface adhesion of WM is affected by a myriad of complicated factors, and thus it is essential to study these influence factors in order to design more reliable materials and structures. Accordingly, this paper investigates the adhesion properties of WM under the influences of critical factors including construction temperature, structure characteristic, material content and use of subcoat. Three representative WM materials were studied: APP-modified-asphalt sheet, self-adhesive rubberized-asphalt sheet, and liquid polymer-modi-fied-asphalt coat. Laboratory test programs of direct shear test, pull-off test and 90° peel test were designed to determine the interface adhesion strengths accounting for the influence factors. Results indicate that adhesion strength increases initially and then decreases with increasing WM material content and surface roughness of concrete deck. The compaction temperature of AC overlay and melting temperature of WM play important roles in forming the interface adhesion. Adding SBS-modified asphalt as a subcoat significantly improves adhesion strength. Material and structural designs considering these critical factors are also discussed.
机译:防水膜(WM)已被用作沥青混凝土(AC)覆盖层与桥梁混凝土桥面之间的中间层,以实现防水和界面粘合的目的。 WM的界面附着力受众多复杂因素的影响,因此有必要研究这些影响因素以设计更可靠的材料和结构。因此,本文研究了在关键因素(包括施工温度,结构特性,材料含量和底涂层的使用)影响下的WM的粘合性能。研究了三种代表性的WM材料:APP改性沥青薄板,自粘橡胶化沥青薄板和液体聚合物改性沥青薄层。设计了直接剪切测试,拉拔测试和90°剥离测试的实验室测试程序,以确定影响因素的界面粘合强度。结果表明,随着WM材料含量和混凝土甲板表面粗糙度的增加,粘结强度开始增加,然后下降。 AC覆盖层的压实温度和WM的熔化温度在形成界面粘合中起着重要作用。添加SBS改性的沥青作为底漆可显着提高粘合强度。还讨论了考虑这些关键因素的材料和结构设计。

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