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首页> 外文期刊>International Journal of Pavement Research and Technology >Effect of corn and soybean oil derived additives on polymer-modified HMA and WMA master curve construction and dynamic modulus performance
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Effect of corn and soybean oil derived additives on polymer-modified HMA and WMA master curve construction and dynamic modulus performance

机译:玉米和大豆油衍生添加剂对聚合物改性的HMA和WMA主曲线构造和动态模量性能的影响

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摘要

In previous work, Isosorbide Distillation Bottoms (IDB), and other isosorbide and soybean based materials with similar properties were shown to act as antistrips in a polymer modified warm mix asphalt (WMA) at a 0.75% dosage level both through visual observations and statistical analysis of Hamburg Wheel Tracking Device (HWTD) test results. Because of this evidence, there is an interest in how specimens produced with isosorbide and soybean bio-derived chemical additives would perform in the dynamic modulus test, as this is the main input used in AASHTOWare Pavement ME in the prediction of rutting performance. The main objective of this research is to compare and contrast dynamic modulus performance of two isosorbide, two soybean bio-derived chemical additive mixtures against each other and controls compacted at both hot mix asphalt (HMA) and WMA compaction temperatures. Master curve modeling with a proposed new (PN) model based on the Yang and You model and Booij and Thoone model for phase angle ( δ ) master curve construction led to the conclusion that proper placement of coefficients makes it possible to maintain precision and accuracy in the determination of E ? master curves while co-determining δ master curves. From the master curve results, it was observed that some of the corn and soybean bio-derived chemical additives may be affecting the viscous behavior at intermediate and high test temperatures. Results from statistical analysis were inconclusive, and thus it is felt that further work must be done comparing HMA and WMA produced specimens in the HWTD test.
机译:在以前的工作中,通过目视观察和统计分析,异山梨醇蒸馏塔底(IDB)以及其他具有类似性能的异山梨醇和大豆基材料在0.75%剂量的聚合物改性温拌沥青(WMA)中均表现为抗剥离剂车轮跟踪装置(HWTD)测试结果。基于这一证据,人们对异山梨醇和大豆生物衍生化学添加剂生产的标本如何在动态模量测试中表现出浓厚兴趣,因为这是AASHTOWare Pavement ME在预测车辙性能方面的主要投入。这项研究的主要目的是比较和对比两种异山梨醇,两种大豆生物衍生的化学添加剂混合物的动态模量性能,并比较在热混合沥青(HMA)和WMA压实温度下的压实效果。使用基于Yang和You模型以及Booij和Thoone模型的新建议(PN)模型进行主曲线建模,以建立相角(δ)主曲线,得出的结论是,适当放置系数可以保持精度和准确性。 E的确定?主曲线,同时共同确定δ主曲线。从主曲线结果可以看出,某些玉米和大豆生物衍生的化学添加剂可能会影响中等和较高测试温度下的粘性行为。统计分析的结果尚无定论,因此认为在HWTD测试中比较HMA和WMA生产的标本必须做进一步的工作。

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