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Development of SUPERPAVE High-Temperature Performance Grade (PG) Based on Rutting Damage

机译:基于车辙损伤的超级杆高温性能等级(PG)的开发

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Superpave asphalt binders are selected using the Performance Grade (PG) methodology introduced by SHRP. The PG grading system has two components; low-temperature and high-temperature. The work presented in this paper provides an improved methodology to select the high temperature PG grade for asphalt binders. An enhanced high-temperature transfer function for pavement temperatures was developed through a comprehensive application of the Integrated Climatic Model (ICM) This model was developed using hourly climatic data, providing a more accurate representation of the high-temperature conditions in the pavement. Using the hourly high-temperature calculations, a performance based procedure utilizing current empirical models for HMA stiffness and rut predictions was developed. This procedure is a damage based comparison of rut development and the impact of the use of different PG graded binders to compare the accumulation of damage. It accounts for extended hot periods in certain climates, which could not be considered in the original selection procedure. Models were developed to extend the damage-based PG concept from the limited number of stations with hourly temperature data to the entire database using daily temperature data. A Degree-Days concept was developed to relate the number of days the pavement temperature is over 10 C to the damage-based PG calculation. The
机译:使用SHRP引入的性能等级(PG)方法选择SuperPave沥青粘合剂。 PG分级系统有两个组件;低温和高温。本文提出的工作提供了一种改进的方法,用于选择沥青粘合剂的高温PG等级。通过综合应用程序集成气候模型(ICM)开发了用于路面温度的增强的高温传递函数,该模型采用每小时气候数据开发,提供了更准确的路面中高温条件的表示。利用每小时的高温计算,开发了利用目前的HMA刚度和车辙预测的实证模型的基于性能的过程。该程序是基于RUT开发的比较和使用不同PG分级粘合剂的影响来比较损伤的积累的损害。它占若干气候中的延长热点,在原始选择程序中无法考虑。开发了模型,以使用每日温度数据将基于损坏的PG概念从有限数量的站点扩展到整个数据库。开发了一个学位的概念,以使人行道温度超过10℃的天数到基于损伤的PG计算。这

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