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Rapid estimation of lives of deficient superpave mixes and laboratory-based accelerated mix testing models.

机译:快速评估不足的超级铺装混合料的寿命以及基于实验室的加速混合料测试模型。

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摘要

The engineers from the Kansas Department of Transportation (KDOT) often have to decide whether or not to accept non-conforming Superpave mixtures during construction. The first part of this study focused on estimating lives of deficient Superpave pavements incorporating nonconforming Superpave mixtures. These criteria were based on the Hamburg Wheel-Tracking Device (HWTD) test results and analysis. The second part of this study focused on developing accelerated mix testing models to considerably reduce test duration.To accomplish the first objective, nine fine-graded Superpave mixes of 12.5-mm nominal maximum aggregate size (NMAS) with asphalt grade PG 64-22 from six administrative districts of KDOT were selected. Specimens were prepared at three different target air void levels Ndesign gyrations and four target simulated in-place density levels with the Superpave gyratory compactor. Average number of wheel passes to 20-mm rut depth, creep slope, stripping slope, and stripping inflection point in HWTD tests were recorded and then used in the statistical analysis. Results showed that, in general, higher simulated in-place density up to a certain limit of 91% to 93%, results in a higher number of wheel passes until 20-mm rut depth in HWTD tests. A Superpave mixture with very low air voids Ndesign (2%) level performed very poorly in the HWTD test.HWTD tests were also performed on six 12.5-mm NMAS mixtures with air voids Ndesign of 4% for six projects, simulated in-place density of 93%, two temperature levels and five load levels with binder grades of PG 64-22, PG 64-28, and PG 70-22.Field cores of 150-mm in diameter from three projects in three KDOT districts with 12.5-mm NMAS and asphalt grade of PG 64-22 were also obtained and tested in HWTD for model evaluation. HWTD test results indicated as expected. Statistical analysis was performed and accelerated mix testing models were developed to determine the effect of increased temperature and load on the duration of the HWTD test. Good consistency between predicted and observed test results was obtained when higher temperature and standard load level were used. Test duration of the HWTD can thus be reduced to two hours or less using accelerated mix testing (statistical) models.
机译:堪萨斯州交通运输部(KDOT)的工程师经常必须决定在施工过程中是否接受不合格的Superpave混合物。本研究的第一部分着重于评估结合了不合格Superpave混合物的不足Superpave路面的使用寿命。这些标准基于汉堡车轮跟踪装置(HWTD)的测试结果和分析。本研究的第二部分着重于开发加速混合料测试模型以显着减少测试时间。为了实现第一个目标,制造了9种12.5mm标称最大骨料尺寸(NMAS)的细级Superpave混合料与沥青等级PG 64-22。选择了KDOT的六个行政区。用Superpave旋转压实机以三个不同的目标气隙水平Ndesign回转和四个目标模拟的原位密度水平制备了样品。记录在HWTD测试中达到20毫米车辙深度的车轮平均通过次数,蠕变斜率,剥离斜率和剥离拐点,然后将其用于统计分析。结果表明,在HWTD测试中,通常更高的模拟原位密度(达到91%至93%的特定限制)会导致车轮通过次数增加,直到车辙深度达到20 mm。在HWTD测试中,空气空隙Ndesign(2%)含量非常低的Superpave混合物的性能非常差。还对六个项目的六个12.5 mm NMAS空气空隙Ndesign为4%的混合物进行了HWTD试验,模拟了原位密度粘合剂等级分别为PG 64-22,PG 64-28和PG 70-22的93%,两个温度水平和五个载荷水平。三个KDOT地区的三个项目中直径为150mm的田间岩心直径为12.5mm还获得了NMAS和PG 64-22的沥青等级,并在HWTD中进行了测试以进行模型评估。 HWTD测试结果表明符合预期。进行了统计分析,并开发了加速混合测试模型,以确定温度和负荷增加对HWTD测试持续时间的影响。当使用较高的温度和标准负载水平时,在预测和观察到的测试结果之间具有良好的一致性。因此,使用加速混合测试(统计)模型可以将HWTD的测试持续时间减少到两个小时或更短。

著录项

  • 作者

    Manandhar, Chandra Bahadur.;

  • 作者单位

    Kansas State University.;

  • 授予单位 Kansas State University.;
  • 学科 Engineering Civil.Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 248 p.
  • 总页数 248
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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