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Evaluation of Various Hamburg Wheel-Tracking Devices and AASHTO T 324 Specification for Rutting Testing of Asphalt Mixtures

机译:评估各种汉堡式车轮跟踪装置和AASHTO T 324沥青混合料车辙试验规范

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摘要

The Hamburg Wheel Tracking (HWT) device is a laboratory-controlled rut depth test that uses loaded wheel(s) to apply a moving load on asphalt mixture specimens to simulate traffic loading on asphalt pavements. Currently, different machines with various degrees of compliance with the current AASHTO T 324-14 requirements are used by highway agencies. The objective of this study was to assess the capabilities of commercially available and representative HWT equipment in the US and to evaluate different analysis and reporting methods for rutting and stripping performance assessment from the HWT test. After performing a comprehensive evaluation of HWT devices from different vendors, considerable discrepancies among different equipment were identified. Furthermore, the available HWT machines do not meet all the requirements set forth in AASHTO T 324 including those for the wheel position waveform, the temperature range, and the reporting parameters. Evaluation of the analysis methods was conducted by applying six analysis procedures to the test data of two asphalt mixes with contrasting rutting resistance and moisture susceptibility. For the poor-performing mix, substantial differences were observed among the different methods, especially in the reporting of the Stripping Inflection Point (SIP). For the good-performing mix, only two of the six methods successfully identified this mix as a non-stripping mix. It is recommended that an approach similar to the one adopted by Iowa DOT be implemented in the revised AASHTO T 324 specification.
机译:汉堡车轮跟踪(HWT)设备是实验室控制的车辙深度测试,该测试使用加载的车轮在沥青混合料样本上施加运动载荷以模拟沥青路面上的交通载荷。当前,公路机构使用了各种程度符合当前AASHTO T 324-14要求的机器。这项研究的目的是评估美国市场上可买到的代表性HWT设备的功能,并评估针对HWT测试进行车辙和剥离性能评估的不同分析和报告方法。在对来自不同供应商的HWT设备进行全面评估之后,发现了不同设备之间的巨大差异。此外,可用的HWT机器不满足AASHTO T 324中提出的所有要求,包括车轮位置波形,温度范围和报告参数的要求。通过对两种沥青混合料的测试数据采用六种分析程序进行对比分析,以评估其抗车辙性和湿气敏感性。对于性能不佳的混合物,观察到了不同方法之间的实质差异,尤其是在剥离拐点(SIP)的报告中。对于性能良好的混合物,六种方法中只有两种成功地将该混合物识别为非汽提混合物。建议在修订的AASHTO T 324规范中采用类似于爱荷华州DOT采取的方法。

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