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Interruption of the Aggregate Matrix by Geogrid Reinforcement in Resilient Modulus Testing

机译:弹性模量测试中土工格栅加固对骨料的破坏

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Inclusion of geogrid in aggregate base materials is an increasingly popular practice in pavement construction. Geogrid reinforcement can improve the performance of pavements by stiffening the base material and decreasing pavement deformations. The objectives of this research were to establish a possible explanation for why laboratory resilient modulus testing is ineffective for assessing improvements in the stiffness of geogrid-reinforced aggregate base specimens and to recommend possible testing solutions. The scope of the research included one aggregate base material and one type of geogrid. Cyclic loading data were used to calculate the resilient modulus on 200-cycle intervals up to 10,000 cycles, and quick shear data were used to calculate the modulus at 2 percent strain after the conditioning period. Specimens with and without geogrid reinforcement were assessed in the testing. As with other studies, the results do not show a significant benefit of geogrid reinforcement on resilient modulus of the tested material. Indeed, specimens reinforced with geogrid had significantly lower dry densities than specimens without geogrid, which suggests that the geogrid interrupted the aggregate matrix. However, the results do show a significant benefit of geogrid reinforcement on modulus at 2 percent strain of the tested material. Because the modulus at 2 percent strain appears to have promise for evaluating the benefits of geogrid reinforcement in aggregate base materials, further research is recommended to correlate this property with typical pavement design inputs.
机译:在人行道建筑中,将土工格栅包含在骨料基础材料中是一种越来越流行的做法。土工格栅加固可以通过加强基础材料并减少路面变形来改善路面性能。这项研究的目的是建立一个可能的解释,说明为什么实验室弹性模量测试无法有效评估土工格栅增强的骨料基础标本的刚度,并提出可能的测试解决方案。研究范围包括一种集料基础材料和一种土工格栅。循环载荷数据用于计算多达10,000次循环的200个循环间隔的弹性模量,而快速剪切数据用于计算调节期后2%应变时的弹性模量。在测试中评估了带有和不带有土工格栅加固的标本。与其他研究一样,结果并未显示出土工格栅加固对测试材料的弹性模量没有明显的好处。实际上,用土工格栅加固的标本的干密度明显低于没有土工格栅的标本,这表明土工格栅打断了骨料基质。但是,结果确实显示了土工格栅加固对测试材料在2%应变下的模量有明显的好处。由于应变为2%时的模量似乎有望评估集料基础材料中土工格栅加固的优势,因此建议进行进一步研究,以将该特性与典型的路面设计输入相关联。

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