Research on differences and correlation between tensile, compression and flexural moduli of cement stabilized macadam

Yi Yang, Jian-long Zheng, Songtao Lu
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引用次数: 1

Abstract

In order to reveal the differences and conversion relations between the tensile, compressive and flexural moduli of cement stabilized macadam, in this paper, we develop a new test method for measuring three moduli simultaneously. By using the materials testing system, we test three moduli of the cement stabilized macadam under different loading rates, propose a flexural modulus calculation formula which considers the shearing effect, reveal the change rules of the tensile, compression and flexural moduli with the loading rate and establish the conversion relationships between the three moduli. The results indicate that: three moduli become larger with the increase of the loading rate, showing a power function pattern; with the shear effect considered, the flexural modulus is increased by 47% approximately over that in the current test method; the tensile and compression moduli of cement stabilized macadam are significantly different. Therefore, if only the compression modulus is used as the structural design parameter of asphalt pavement, there will be a great deviation in the analysis of the load response. In order to achieve scientific design and calculation, the appropriate design parameters should be chosen based on the actual stress state at each point inside the pavement structure.
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水泥稳定碎石抗拉、抗压、抗弯模量的差异及相关性研究
为了揭示水泥稳定碎石的拉、压、弯三种模量之间的差异和转换关系,本文提出了一种同时测量三种模量的试验方法。利用材料测试系统对水泥稳定碎石在不同加载速率下的三个模量进行了测试,提出了考虑剪切效应的抗弯模量计算公式,揭示了抗拉、抗压和抗弯模量随加载速率的变化规律,建立了三个模量之间的换算关系。结果表明:三模量随加载速率的增大而增大,呈幂函数模式;考虑剪切效应后,试件的抗弯模量比现有试验方法提高了约47%;水泥稳定碎石的拉伸模量和压缩模量存在显著差异。因此,如果仅以压缩模量作为沥青路面的结构设计参数,在荷载响应分析中将存在较大偏差。为了实现科学的设计计算,应根据路面结构内部各点的实际应力状态选择合适的设计参数。
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