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Chemical-Mechanical Interaction of Non-Tracking Tack Coat and Aggregate on Bond Strength

机译:非跟踪粘性外套与骨料的化学机械相互作用对粘结强度的影响

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摘要

The effectiveness of a hot-mix asphalt (HMA) overlay is largely dependent on the quality of its bond to the existing surface. A good bond will evenly disperse traffic loads from one layer into the next, while a poor bond will concentrate stresses within relatively thin upper layer. This condition will expedite premature distresses like fatigue cracking, slippage cracking and delamination. All of these problems are then exacerbated by moisture accumulating at the bonded interface. Non-tracking tacks, recently introduced to the paving industry, bond asphalt layers together while avoiding the tracking problems under traffic associated with traditional tacks. While traditional tack has been well studied, these new products require further evaluation. Of particular concern is the loss of adhesion between exposed aggregate on the existing road and asphalt binder. The objectives of this study were to characterize existing non-tracking products, and measure the bonding potential of different types of aggregate from a chemo-mechanical perspective. For this purpose, the rheological properties of the emulsion residues and base binder of five non-tracking tacks and one conventional tack were characterized. The bonding potential between the tack and different aggregate substrates was measured with a pneumatic adhesion tester. The results show significant differences in bond strength of aggregates with rough surface and the control binder or emulsion residue at different testing temperatures. The control binder and emulsion residue at different testing temperatures were also found to develop different bond strength with any given aggregate. The results show that the control binder and emulsion residue have different degrees of sensitivity to aggregate type in terms of their bond strength.
机译:热混合沥青(HMA)覆盖层的有效性在很大程度上取决于其与现有表面的粘结质量。良好的粘结将交通负荷从一层均匀地分散到下一层,而不良的粘结会将应力集中在相对较薄的上层内。这种情况将加速疲劳裂纹,滑移裂纹和分层等过早的困扰。所有这些问题随后都会由于在粘结界面处积聚的水分而加剧。最近引入到摊铺行业的非跟踪大头钉将沥青层粘合在一起,同时避免了与传统大头钉相关的交通情况下的跟踪问题。尽管已经对传统的粘性进行了深入研究,但这些新产品需要进一步评估。特别值得关注的是在现有道路上裸露的骨料与沥青胶结剂之间失去附着力。这项研究的目的是表征现有的非跟踪产品,并从化学机械角度测量不同类型的骨料的结合潜力。为此,表征了五种非跟踪性和一种常规粘性的乳液残留物和基础粘合剂的流变特性。用气动粘附力测试仪测量粘性和不同聚集体基材之间的粘合电位。结果表明,在不同的测试温度下,具有粗糙表面的骨料和对照粘合剂或乳液残留物的粘结强度存在显着差异。还发现对照粘合剂和乳液残留物在不同的测试温度下与任何给定的聚集体都具有不同的粘合强度。结果表明,就粘合剂强度而言,对照粘合剂和乳液残留物对聚集体类型的敏感性程度不同。

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