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Non-destructive strength and stiffness evaluation of cement-stabilised granular lateritic soils

机译:水泥稳定粒状斑纹的非破坏性强度和刚度评价

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摘要

Modulus of pavement materials is an important input parameter for the mechanistic design of pavements. As the bound layers such as cement-stabilised materials fail in flexure, flexural modulus (FM) is generally used as the modulus of stabilised material for the analysis of pavements. FM is determined from four-point bending tests under cyclic loading, but this process is a time-consuming exercise and therefore non-destructive method such as ultrasonic pulse velocity test (UPV test) may be employed for rapid determination of the modulus of elasticity of the material. In this study, ultrasonic pulse velocity of cement-stabilised granular lateritic soil (CLS) samples was determined using the UPV test and were correlated with the compressive strength, flexural strength and FM of 28-days cured stabilised specimens. It has been observed that the variation in pulse velocity determined from the UPV test shows good agreement with the variation of compressive strength and flexural strength of the stabilised lateritic granular soil samples considered in the study. Correlation was also established between the FM determined from the cyclic flexural test and constrained modulus determined from the UPV test on CLS beam samples.
机译:路面材料的模量是路面机械设计的重要输入参数。由于诸如水泥稳定材料的束缚层,在弯曲中失效,弯曲模量(FM)通常用作稳定化材料的模量,用于分析路面。从循环加载下的四点弯曲试验中确定FM,但该过程是耗时的运动,因此可以采用超声波脉冲速度试验(UPV测试)的非破坏性方法来快速测定弹性模量材料。在该研究中,使用UPV试验测定水泥稳定的粒状粒度(CLS)样品的超声波脉冲速度,并与抗压强度,弯曲强度和28天固化的稳定标本的FM相关。已经观察到从UPV测试确定的脉冲速度的变化表现出良好的一致性与研究中考虑的稳定的外形颗粒土样品的抗压强度和抗弯强度的变化。在从循环弯曲试验和由CLS束样品上的UPV测试确定的受约束模量确定的FM之间也建立了相关性。

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