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Evaluation of resilient modulus and unconfined compressive strength of subgrade

机译:评估石化模量和路基的非整合抗压强度

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Subgrade soil is the important material as the foundation for supporting the pavement layers and the repeated load of vehicle traffic. To characterize the stiffness and strength behavior of subgrade due to traffic loading in structural pavement design can be determined by resilient modulus and unconfined compressive strength test. In this study, laboratory test of resilient modulus and unconfined compressive strength used to investigate (1) the effect of moisture content of the changes of stiffness and strength characteristics, (2) the correlation between the resilient modulus and elasticity modulus. The soil sample prepared at five type of compacted soils, at the dry side (OMC-20%OMC and OMC-10%OMC), OMC and at the wet side (OMC+10%OMC and OMC+20%OMC) . The result shows the moisture content has a significant effect on cohesive soil, the resilient modulus, modulus elasticity and stress value increase with the increase of moisture content until reaching the optimum moisture content (OMC) and then decrease with the increase of moisture content on the wet side of OMC point. By comparing both resilient modulus and unconfined compressive strength result from ANOVA statistics analysis can be concluded that there is no difference in stiffness between resilient modulus and modulus elasticity methods.
机译:路基土壤是支持路面层的重要材料和车辆交通的重复负荷。为了表征基于结构路面设计的流量负载的路基的刚度和强度行为,可以通过弹性模量和非整合的抗压强度试验来确定。在该研究中,有弹性模量的实验室试验和无凝固的抗压强度用于研究(1)刚度和强度特性变化的水分含量的影响,(2)弹性模量和弹性模量之间的相关性。土壤样品在干燥的侧面(OMC-20%OMC和OMC-10%OMC),OMC和湿侧(OMC + 10%OMC和OMC + 20%OMC)以5种压实的土壤制备。结果表明,水分含量对粘性土壤具有显着影响,弹性模量,模量弹性和应力值随着水分含量的增加而增加,直到达到最佳水分含量(OMC),然后随着水分含量的增加而降低OMC点的湿侧。通过比较来自ANOVA统计分析的弹性模量和非整合的压缩强度结果,可以得出结论,弹性模量与模量弹性方法之间没有差异。

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