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Impacts of WMA additives on rutting resistance and moisture susceptibility

机译:WMA添加剂对抗抵抗和湿度敏感性的影响

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摘要

The implementation of warm-mix asphalt (WMA) is becoming more widespread in the United States of America with a growing number of contractors choosing to utilize various WMA technologies. WMA technologies were developed in order to reduce mixing and compaction temperatures of hot mix asphalt (HMA) without affecting the quality of the pavement. Research into the effects of WMA additives suggests that it may be more susceptible to rutting and moisture damage than traditional HMA pavements. The objective of this research is to evaluate the effects of a single WMA additive on resistance to rutting and moisture damage on lab mixed and field mixed pavements. This objective was completed by conducting extensive laboratory experiments to determine and assess the performance of both WMA and HMA mixtures produced using Iowa aggregates. The conclusions of this study are as follow: * Reduced mixing and compaction temperatures were achieved using the selected additive. * The selected WMA additive was successfully used and samples were taken during a local resurfacing project. * Moisture sensitivity of both field mixed WMA and field mixed HMA were comparable although both failed to meet Iowa DOT standards. * Dry Indirect Tensile Strength values of lab mixed WMA and HMA samples were nearly the same. * TSR values of lab mixed HMA surpassed those of lab mixed WMA although both failed to meet Iowa DOT standards. * The aged field mixed HMA successfully passed the Hamburg Wheel Tracker Test and provided the best creep and stripping values compared to all other field mixed specimens. * Lab mixed HMA using a PG 64-22 binder performed the best compared to all other lab mixed specimens although none of the lab mixed specimens successfully passed the Hamburg Wheel Tracker Test.
机译:在美利坚合众国的实施方面具有越来越多的承包商选择利用各种WMA技术,实施更加广泛。开发了WMA技术,以减少热混合沥青(HMA)的混合和压实温度而不影响路面的质量。 WMA添加剂效果的研究表明,它可能比传统的HMA路面更容易受到车辙和湿度损伤。本研究的目的是评估单个WMA添加剂对耐射击和田间混合路面耐受水分损伤的影响。通过进行广泛的实验室实验来完成该目的,以确定和评估使用爱荷华群系生产的WMA和HMA混合物的性能。本研究的结论如下:*使用所选添加剂实现减少的混合和压实温度。 *已成功使用所选的WMA添加剂,并在局部Resurfacing项目期间进行样品。 *虽然两者都未能满足IOWA DOT标准,但是诸如田地混合WMA和野外混合HMA的湿度敏感性可相当。 * Lab混合WMA和HMA样品的干燥间接拉伸强度值几乎是相同的。 *实验室混合HMA的TSR值超过了实验室混合WMA,尽管两者都无法满足IOWA DOT标准。 *老年的田间混合HMA成功通过了汉堡轮跟踪器测试,并与所有其他场混合标本相比,提供了最佳的蠕变和剥离值。 *实验室混合HMA使用PG 64-22粘合剂表现了与所有其他实验室混合标本相比最好的,尽管没有实验室混合标本都没有成功地通过了汉堡轮跟踪器测试。

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    Thomas Glueckert;

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