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Aggregate-binder adhesiveness assessment and investigation of the influence of morphological and physico-chemical properties of mineral aggregates

机译:骨料与粘结剂的粘合性评估以及矿物骨料的形态和理化性质的影响

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Aggregate-binder adhesiveness in asphalt mixtures is affected by the physico-chemical properties of aggregates and asphalt binder. The objective of this paper is to analyse how aggregate morphological and physico-chemical properties affect the aggregate-binder adhesiveness measured by different techniques. Two aggregate sources (granitic and phonolitic) combined with two asphalt binders (a neat binder and the same binder modified by an anti-stripping agent) were used. Grounded plastic bags were also used as an additive to improve aggregate-binder interface properties. The adhesiveness test used follows ABNT 12583 (similar to static water storage according to EN 12697-11B) and subsequent digital image processing (DIP), developed in a previous work. Absorption was measured by a classical immersion weighting procedure (DNER 081), while angularity and texture were determined using the Aggregate Image Measurement System (AIMS). Aggregate's chemical composition was investigated by X-Ray Fluorescence. Moisture-induced damage resistance was determined by the modified Lottman test (ABNT 15617). Asphalt Bond Strength (ABS) tests were performed with different water conditioning times. DIP allowed correlating adhesiveness to different parameters, such as angularity, texture, porosity and oxide content of the aggregate, and also to moisture-induced damage test results and the ABS test results. Results show that the granitic aggregate presented better adhesiveness with both the neat binder and the binder with anti-stripping agent. The mixture with grounded plastic bags also had better adhesiveness when compared to the control mixture. Aggregate's angularity, texture and porosity do not appear to affect aggregate-binder adhesiveness, whereas Fe2O3 and CaO content presented excellent correlations with the adhesiveness test analysed by DIP. The asphalt film dislocation test analysed by DIP also presented strong correlation with the moisture-induced damage test. It seems possible to establish a reliable limit for DIP results in this simple test to prevent mixtures of being susceptible to moisture damage.
机译:沥青混合料中骨料与粘合剂的粘合性受骨料和沥青粘合剂的物理化学性质影响。本文的目的是分析骨料的形态和理化性质如何影响通过不同技术测量的骨料与粘合剂的粘合性。使用了两种骨料来源(粒状和方粒状)与两种沥青粘合剂(纯粘合剂和经防剥离剂改性的同一粘合剂)。接地的塑料袋也用作添加剂,以改善骨料与粘合剂的界面性能。使用的附着力测试遵循ABNT 12583(类似于根据EN 12697-11B的静态水存储)和先前工作中开发的后续数字图像处理(DIP)。通过经典的浸入加权程序(DNER 081)测量吸收,而使用聚合图像测量系统(AIMS)确定角度和纹理。骨料的化学组成通过X射线荧光检测。通过改进的Lottman试验(ABNT 15617)确定了水分引起的抗破坏性。沥青粘结强度(ABS)测试是在不同的水处理时间下进行的。 DIP允许将粘合性与不同参数(例如集料的角度,织构,孔隙率和氧化物含量)相关联,还可以将其与湿气引起的损伤测试结果和ABS测试结果相关联。结果表明,花岗石骨料与纯净粘结剂和具有抗剥离剂的粘结剂均具有更好的粘附性。与对照混合物相比,带有接地塑料袋的混合物还具有更好的粘合性。骨料的角度,质地和孔隙率似乎并未影响骨料与粘合剂的粘合性,而Fe2O3和CaO含量与DIP分析的粘合性测试显示出极好的相关性。 DIP分析的沥青薄膜脱位试验也与湿气损伤试验具有很强的相关性。似乎有可能在此简单测试中为DIP结果建立可靠的限制,以防止混合物易受湿气损害。

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