首页> 外文期刊>Journal of materials in civil engineering >Estimating Moisture Sensitivity of Warm Mix Asphalt Modified with Zycosoil as an Antistrip Agent Using Surface Free Energy Method
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Estimating Moisture Sensitivity of Warm Mix Asphalt Modified with Zycosoil as an Antistrip Agent Using Surface Free Energy Method

机译:使用表面自由能法估算以Zycosoil作为抗条剂改性的热拌沥青的水分敏感性

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With increasing interest in the use of warm mix asphalt (WMA) in the paving industry, more studies in this field for improvement of WMA properties seem to be necessary. In past decade, several studies focusing on use of Sasobit and asphamin as warm additives in asphalt mixtures have been conducted; however, the effects of these additives on moisture susceptibility of asphalt mixture are still not fully understood. In this study, the moisture susceptibility of WMA evaluated with and without a new nanotechnology material as antistrip additive (namely Zycosoil) by determining the micromechanisms that affect the adhesion bond between the aggregate and asphalt binder and the cohesion strength of the asphalt binder using the surface free energy (SFE) concept and laboratory testing analysis. Indeed, the primary goal of this research was to decrease the moisture damage in WMA. Two types of aggregates, limestone and granite, and two types of WMA additives, namely Sasobit and aspha-min, in addition to as Zycosoil as an antistrip additive were evaluated in this study. Moisture sensitivity index, which is the percentage of the aggregate surface exposed to water (P) as calculated by using the measured SFE and dynamic modulus results, was considered an index for the moisture susceptibility of mixtures. The findings suggest that WMA additives cause an increase in the acid component and a reduction in the SFE base components of asphalt binder. This causes decreased adhesion between acidic aggregate that is more moisture damange and asphalt binder. Moreover, Zycosoil additives cause an increase in the adhesion SFE between asphalt binder, modified with WMA additives and aggregates in the presence of water. A dynamic modulus test of Zycosoil performance yielded similar results, suggesting that using this material causes the ratio of the dynamic modulus values for wet/dry condition to increase significantly in samples made with WMA additives. For these reasons, the percentage of aggregate surface area wetted by water, index P, decreased when Zycosoil was used in all samples.
机译:随着在摊铺行业中对使用热拌沥青(WMA)的兴趣日益浓厚,在该领域改善WMA性能的研究似乎是必要的。在过去的十年中,进行了几项研究,重点研究了在沥青混合物中使用Sasobit和沥青质作为温暖的添加剂。然而,这些添加剂对沥青混合料的湿气敏感性的影响仍未被完全理解。在这项研究中,通过确定影响集料与沥青胶结物之间的粘结力以及沥青胶结物在表面上的内聚强度的微观机制,对使用和不使用新型纳米技术作为抗剥离添加剂(即Zycosoil)的WMA的湿气敏感性进行了评估。自由能(SFE)概念和实验室测试分析。确实,这项研究的主要目标是减少WMA中的水分损害。这项研究评估了两种骨料,石灰石和花岗岩,以及两种WMA添加剂,即Sasobit和Aspha-min,以及Zycosoil作为抗剥离剂。湿度敏感性指数是混合物中暴露于水(P)的百分比,这是通过使用测得的SFE和动态模量结果计算得出的,它被视为混合物的水分敏感性指数。研究结果表明,WMA添加剂会导致沥青粘合剂的酸成分增加,而SFE基础成分的成分减少。这导致更多水分的酸性骨料与沥青粘合剂之间的粘合力降低。此外,Zycosoil添加剂会导致沥青粘合剂之间的粘合SFE升高,而WMA添加剂会在水的存在下改性沥青粘合剂和骨料。 Zycosoil性能的动态模量测试得出相似的结果,表明使用这种材料会使使用WMA添加剂制成的样品的湿/干条件下的动态模量值之比显着增加。由于这些原因,当在所有样品中使用Zycosoil时,被水润湿的总表面积的百分比P降低。

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