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Critical Considerations toward Better Implementation of the Multiple Stress Creep and Recovery Test

机译:更好地执行多重应力蠕变和恢复测试的关键考虑因素

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摘要

In recent years, many studies have dealt with the inadequacy of the current Superpave performance grading (PG) specification for accurately capturing the performance properties of modified binders. An alternative binder testing mode that has gained much attention in recent years is the repeated creep and recovery (RCR) test, and more specifically, the multiple stress creep and recovery (MSCR) test. As with any new test procedure, a number of concerns and questions remain with regards to interpretation of results in terms of performance and sufficiency of the number of cycles and stress levels used, as well as representative temperature and stress levels to be used. This paper investigates the aforementioned issues using a set of modified and unmodified binders. The results show that the standard 10 cycles per stress level are not sufficient to reach a stable steady-state creep behavior for modified binders, thus the addition of 20 conditioning cycles are recommended, for a total of 30 cycles for each stress level. It is also shown that using the last five cycles to determine an average J_nr value is a better choice for reporting and analysis due to reaching a more stable and consistent state of creep. Furthermore, the current stress levels' use of 0.10 and 3.20 kPa are deemed insufficient for accurate representation of binder stress state in the pavement, thus a higher stress level step is recommended for addition to the test procedure.
机译:近年来,许多研究已经解决了当前的Superpave性能等级(PG)规范不足以准确捕获改性粘合剂的性能特性的问题。近年来,备受关注的另一种粘合剂测试模式是重复蠕变和恢复(RCR)测试,更具体地说是多重应力蠕变和恢复(MSCR)测试。与任何新的测试程序一样,在性能解释,所用循环次数和应力水平以及要使用的代表性温度和应力水平方面,对结果的解释仍然存在许多问题。本文使用一组改性和未改性的粘合剂研究上述问题。结果表明,每个应力水平的标准10个循环不足以使改性粘合剂达到稳定的稳态蠕变行为,因此建议增加20个调节循环,每个应力水平总共需要30个循环。还显示,由于达到更稳定和一致的蠕变状态,使用最后五个周期来确定平均J_nr值是报告和分析的更好选择。此外,使用当前的应力水平0.10和3.20 kPa被认为不足以准确表示路面中的粘合剂应力状态,因此建议在测试过程中增加较高的应力水平步骤。

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  • 来源
    《Journal of materials in civil engineering》 |2017年第5期|04016295.1-04016295.7|共7页
  • 作者单位

    Project Engineer, Engineering and Software Consultants, Inc., 1200 New Jersey Ave. S.E., E73-463, Washington, DC 20590;

    Professor, Dept. of Civil and Environmental Engineering, Univ. of Wisconsin, Madison, WI 53706;

    Senior Scientist, Bituminous Systems Cargill Industrial Specialties, 13400, 15th Ave. North, Suite B, MS 103, Plymouth, MN 55441;

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