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首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Thermal and cold flow properties of bio-derived rejuvenators and their impact on the properties of rejuvenated asphalt binders
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Thermal and cold flow properties of bio-derived rejuvenators and their impact on the properties of rejuvenated asphalt binders

机译:生物衍生的再生器的热和冷流量及其对恢复沥青粘合剂性质的影响

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摘要

Rejuvenators are widely used to improve the properties of asphalt binders particularly low temperature and fatigue cracking behavior. Rejuvenators vary significantly in terms of their physical properties and chemical composition. The nature of the interaction between the rejuvenators and the base asphalt binders is very complex and an extensive study into the chemical and thermal properties of the rejuvenators and how they impact the rheological properties of rejuvenated binders is of paramount importance. In this research, a neat PG58-28 binder is rejuvenated with three different materials produced from soybean oil at a dosage of 6% by total weight of binder. The rheological properties of the control and rejuvenated binders are assessed using performance grades showing a drop in both the critical low and high temperature grades with rejuvenation. The oxidative stability of the rejuvenators as well as the rejuvenated binders is studied using thermogravimetric analysis (TGA). The crystallization and melting points of the rejuvenators are observed using differential scanning calorimetry (DSC). DSC is also used to examine the glass transition temperatures of the control and rejuvenated binders. The TGA results showed one of the rejuvenators to be susceptible to oxidation which agreed with the rolling thin film oven (RTFO) mass loss results. The glass transition temperature of the rejuvenated binders decreased denoting improved low temperature cracking properties in line with the performance grade results.
机译:Rejuvenators广泛用于改善沥青粘合剂的性质,特别是低温和疲劳裂化行为。 Rejuvenators在其物理性质和化学成分方面差异很大。再融化剂和基础沥青粘合剂之间的相互作用的性质非常复杂,并且广泛地研究了再融化器的化学和热性质以及它们如何影响恢复活化的粘合剂的流变性质是至关重要的。在该研究中,纯净的PG58-28粘合剂用来自大豆油生产的三种不同的材料来恢复活力,其剂量为6%的粘合剂总重量。使用性能等级评估对照和恢复活化粘合剂的流变性质,其表现出在临界低温和高温等级中的折衷和高温等级。使用热重分析(TGA)研究了再融化器的氧化稳定性以及恢复粘合剂。使用差示扫描量热法(DSC)观察再融化器的结晶和熔点。 DSC还用于检查对照和恢复活力的玻璃化转变温度。 TGA结果显示了易受氧化氧化的再氧化剂之一,其同意滚动薄膜烘箱(RTFO)质量损失结果。恢复活力粘合剂的玻璃化转变温度随着性能等级结果而改善的低温裂化性能。

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