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Superpave Gyratory Compactor as an Alternative Design Method for Roller Compacted Concrete in the Laboratory

机译:超级助剂压实机作为实验室中的滚子压实混凝土的替代设计方法

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摘要

The introduction of the Superpave gyratory compactor (SGC) to pavement laboratories was a large step for the design process of hot mix asphalt (HMA). Considering the similarities between HMA and roller compacted concrete (RCC), the use of SGC in the design work of RCC pavement can offer many advantages. This study covers a wide range of RCC mixtures that can help to set the limits of using SGC for RCC mixture design. Therefore, a detailed experimental matrix was developed by taking various mixture parameters and gyration levels into account. Moreover, four different RCC mixtures determined on the basis of optimum mix designs were also produced by vibratory hand roller in order to simulate the field compaction conditions in the laboratory. The SGC results showed that for the same gyration level, the compaction ratio changes when the mixture is changed. The results also concluded that the gyration level for the same mixtures was the least significant factor affecting the mechanical performance. Hence, SGC is more effective in predicting the behavior of the fresh RCC. On the other hand, the mixtures with similar compaction ratios compacted by SGC and hand roller resulted in a similar strength level. Therefore, for RCC specimens produced by the SGC method, targeting the sample density (i.e., compaction ratio) is recommended due to its ease of applicability under field conditions rather than making a design based on the number of gyrations as used in conventional SGC applications.
机译:将SuperPave陀螺压实机(SGC)引入路面实验室是热混合沥青(HMA)的设计过程的大步。考虑到HMA和滚筒压实混凝土(RCC)之间的相似性,SGC在RCC路面设计工作中的使用可以提供许多优点。本研究涵盖了各种RCC混合物,可以帮助设置使用SGC进行RCC混合设计的限制。因此,通过考虑各种混合参数和环荷水平来开发详细的实验基质。此外,还通过振动手滚筒产生了基于最佳混合设计确定的四种不同的RCC混合物,以模拟实验室的场压缩条件。 SGC结果表明,对于相同的环流水平,当混合物改变时压实率变化。结果还得出结论,相同混合物的环状水平是影响机械性能的最低重量因素。因此,SGC在预测新鲜RCC的行为方面更有效。另一方面,具有由SGC和手辊压实的类似压缩比的混合物导致相似的强度水平。因此,对于由SGC方法产生的RCC标本,推荐靶向样品密度(即压实率),这是由于其在现场条件下的适用性而不是基于传统的SGC应用中使用的热量的数量来制造设计。

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