首页> 外文会议>Symposium on Engineering Properties of Asphalt Mixtures and the Relationship to their Performance Dec 6, 1994 Phoenix, AZ >INVESTIGATION OF THE RELATIONSHIP BETWEEN FIELD PERFORMANCE AND LABORATORY AGING PROPERTIES OF ASPHALT MIXTURES
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INVESTIGATION OF THE RELATIONSHIP BETWEEN FIELD PERFORMANCE AND LABORATORY AGING PROPERTIES OF ASPHALT MIXTURES

机译:沥青混合料的田间性能与实验室老化性能之间的关系研究

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Short- and long-term aging procedures were developed at Oregon State University under the Strategic Highway Research Program (SHRP) A-003A project. Several alternative methods for short- and long-term aging of asphalt-aggregate were examined. These were subjected to extensive laboratory and field validation test programs. Laboratory validation was done with an extensive testing program using 8 asphalts and 4 aggregates. Field validation utilized 20 test sites and compared the modulus of field aged and laboratory aged specimens. For short-term aging a procedure of curing the loose mix in a forced draft oven at 135℃ for 4 hours was recommended. For long-term aging, oven aging at 85℃ for 4 days was recommended to represent projects of about 10 years old. Alternative procedures may be appropriate in some situations. Long-term oven aging for 2 days at 100℃ could be used for stiff mixes, whereas a low pressure procedure of 4 days at 85℃ may be necessary for soft mixes. The results of the asphalt-aggregate mixture testing presented herein show that the aging of the mixture is dependant on both the asphalt and the aggregate. Also, it appears, from the evaluation of data from other SHRP contractors, that the aging and subsequent testing of asphalt alone is not a good predictor of how a mixture will behave due to the effect of the asphalt-aggregate interaction. Continued monitoring of field projects is needed, particularly for Dry-No Freeze and Wet-No Freeze zones. Increasing the number of sites and total number of 3Senior Research Specialist, Oregon Department of Transportation, Salem, OR 97310. specimens tested will facilitate the use of regression analyses to develop performance prediction models.
机译:俄勒冈州立大学根据战略公路研究计划(SHRP)A-003A项目制定了短期和长期老化程序。研究了沥青骨料短期和长期老化的几种替代方法。这些都经过了广泛的实验室和现场验证测试程序。实验室验证是通过使用8种沥青和4种集料的广泛测试程序完成的。现场验证利用了20个测试点,并比较了现场老化和实验室老化样品的模量。对于短期老化,建议将松散混合物在135℃的强制通风炉中固化4小时。对于长期老化,建议在85℃的烤箱中老化4天以代表大约10年的项目。在某些情况下,替代程序可能适用。对于硬质混合物,可以在100℃下长期烘箱老化2天,而对于软质混合物,可能需要在85℃下进行4天低压处理。本文给出的沥青-骨料混合物测试结果表明,混合物的老化取决于沥青和骨料。而且,从其他SHRP承包商的数据评估来看,由于沥青-骨料相互作用的影响,单独的沥青老化和后续测试似乎不能很好地预测混合物的表现。需要对实地项目进行持续监测,尤其是对于“无冻区”和“无冻区”。俄勒冈州交通运输部俄勒冈州塞勒姆市97310的3Senior Research Specialist的站点数量和总数不断增加。测试的标本将有助于使用回归分析来开发性能预测模型。

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