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首页> 外文期刊>Transportation Research Record >Establishment of the Precision of a Rapid-Angle Measurement Device for Superpave Gyratory Compactors
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Establishment of the Precision of a Rapid-Angle Measurement Device for Superpave Gyratory Compactors

机译:Superpave回转压实机快速角测量装置精度的建立

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摘要

Superpave~® hot-mix asphalt (HMA) specimens are compacted in the laboratory with the Superpave gyratory compactor (SGC) through pressure and an applied angle of gyration. The original compaction specification for the SGC requires the angle of gyration to be 22 ± 0.35 mrad (1.25 + 0.02 degrees), measured externally to the compaction mold. Questions concerning the ability of different compactors to produce HMA specimens of the same mix with the same density led to the development of the dynamic angle validation (DAV) kit, which measures the angle of gyration internally (on the inside of the mold). The DAV procedure requires the use of HMA to measure the internal angle of gyration. Because of practical limitations of performing measurements with HMA and questions concerning the "proper" HMA mix to use in the measurements, a device—the rapid-angle measurement (RAM)—was introduced to simulate effectively the load placed on the SGC by an HMA specimen. An inter-laboratory study was conducted in accordance with ASTM E691-99 to establish the precision of the internal angle measurement provided by the RAM. A total of 11 RAM units and five SGC models were included in the study. On the basis of the study data, estimates were developed of both repeatability (within lab) and reproducibility (between lab) for the RAM device for all five SGC models. It is recommended that all devices with the reported ability to measure internal angle of gyration be subjected to a similar interlaboratory study to compare devices on an equal basis.
机译:Superpave〜®热混合沥青(HMA)样品在实验室中通过Superpave旋转压实机(SGC)通过压力和施加的旋转角度压实。 SGC的原始压紧规范要求旋转角为22±0.35毫拉德(1.25 + 0.02度),在压紧模具的外部进行测量。有关不同压实机生产具有相同密度的相同混合物的HMA样品的能力的疑问,导致了动态角度验证(DAV)套件的开发,该套件可在内部(在模具内部)测量回转角度。 DAV程序需要使用HMA来测量旋转的内角。由于使用HMA进行测量的实际局限性以及有关在测量中使用“合适的” HMA混合物的问题,因此引入了一种设备-快速角度测量(RAM)-以有效模拟HMA施加在SGC上的负载样品。根据ASTM E691-99进行了实验室间研究,以建立RAM提供的内角测量精度。该研究总共包括11个RAM单元和5个SGC模型。根据研究数据,对所有五个SGC模型的RAM装置的重复性(实验室内)和可重复性(实验室间)进行了估算。建议对所有已报告的具有测量内旋转角的能力的设备进行类似的实验室间研究,以平等地比较设备。

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