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Effects of Paver Stoppage on Temperature Segregation in Asphalt Pavements

机译:摊铺机停车对沥青路面温度偏析的影响

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摘要

Temperature segregation, which occurs as a result of differential cooling of asphalt mixtures, is a serious challenge during asphalt paving operations. The objective of this study is to investigate temperature segregation caused by paver stoppage through field measurements, laboratory tests, and finite-element (FE) analyses. Five Louisiana asphalt rehabilitation projects were selected for the study. A multisensor infrared temperature scanning bar (IR-bar) system was used for field measurements of the real-time thermal profiles of uncompacted asphalt mats behind the paver. Laboratory performance of thermally segregated asphalt pavements from three selected projects were evaluated by measuring the fracture resistance of field asphalt samples at 25°C using the semicircular bend (SCB) test. From field measurements, it was clear that temperature segregation occurs whenever the paver stops, and the level of segregation (temperature drop) is dependent on the duration of paver stoppage, e.g., temperature segregation of more than 55°C can occur within less than 1 h of the stoppage. Laboratory performance test results showed that the asphalt samples from unsegregated areas generally had better fracture resistance than the samples from the segregated areas did. FE analysis results showed nonlinear decreases of temperature in the uncompacted asphalt mats. Furthermore, the cooling rate of hot-mix asphalt (HMA) was almost twice as fast as the warm-mix. To avoid high-severity temperature segregation (more than 21℃), it is recommended that paver stoppage time should be kept minimum with a maximum duration of 4 min for hot-mix and 6 min for warm-mix asphalts, respectively.
机译:由于沥青混合料的不同冷却而产生的温度偏析是沥青摊铺操作中的严峻挑战。这项研究的目的是通过现场测量,实验室测试和有限元(FE)分析来研究摊铺机停车引起的温度偏析。选择了五个路易斯安那州的沥青修复项目。多传感器红外温度扫描棒(IR-bar)系统用于摊铺机后未压实沥青垫的实时热剖面的现场测量。通过使用半圆弯曲(SCB)测试在25°C下测量现场沥青样品的抗断裂性,评估了三个选定项目的热隔离沥青路面的实验室性能。从现场测量中可以明显看出,摊铺机每次停止时都会发生温度偏析,并且偏析的程度(温度下降)取决于摊铺机停止的持续时间,例如,温度偏析超过55°C可能会在不到1分钟的时间内发生停工时间的h。实验室性能测试结果表明,未隔离区域的沥青样品通常比隔离区域的样品具有更好的抗断裂性。有限元分析结果表明,未压实的沥青垫层温度非线性降低。此外,热混合沥青(HMA)的冷却速度几乎是热混合沥青的两倍。为避免严重的温度偏析(超过21℃),建议将摊铺机的停机时间保持最短,热拌沥青的最大持续时间分别为4分钟和温拌沥青的最大持续时间分别为6分钟。

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  • 来源
    《Journal of materials in civil engineering》 |2017年第2期|04016200.1-04016200.7|共7页
  • 作者单位

    Dept. of Civil and Environmental Engineering, Louisiana Transportation Research Center, Louisiana State Univ., Baton Rouge, LA 70803-6419;

    Construction Education Trust Fund (CETF), Dept. of Construction Management, Louisiana State Univ., Baton Rouge, LA 70803-6419;

    Louisiana Transportation Research Center, Louisiana State Univ., 4101 Gourrier Ave., Baton Rouge, LA 70808;

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