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首页> 外文期刊>Transportation Research Record >Correlation Between Resilient Modulus, Moisture Variation, and Soil Suction for Subgrade Soils
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Correlation Between Resilient Modulus, Moisture Variation, and Soil Suction for Subgrade Soils

机译:路基土的弹性模量,水分变化与吸力的相关性

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In recent years, interest in determining the influence of moisture changes on the resilient modulus (M_R) of subgrade soils beneath a pavement has increased. This is because the 1993 AASHTO Guide for Design of Pavement Structures recommends using a single M_R value. The design M_R is expected to account for the seasonal variation in subgrade moisture content. This study was undertaken to evaluate the variation of M_R with post-compaction moisture content and suction of selected subgrade soils in Oklahoma. A sandy soil (S-Soil) and a clayey soil (C-Soil) were used for laboratory testing. The C-Soil specimens to be subjected to wetting were prepared by a modified compaction method. The proposed method was expected to enhance the flow of water in a specimen during the wetting process. New laboratory procedures for wetting and drying of specimens were also introduced and were used to establish correlations among M_R, moisture variation, and suction. Results indicate that M_R-moisture content relationships for C-Soil exhibit a hysteretic behavior due to wetting and drying. A similar behavior was observed for S-Soil. The C-Soil was more susceptible than the S-Soil to moisture variation, as expected. It was also observed that changes in M_R values and suction were influenced by the initial (compaction) moisture content.
机译:近年来,人们越来越关注确定水分变化对人行道下方路基土壤弹性模量(M_R)的影响。这是因为1993年AASHTO路面结构设计指南建议使用单个M_R值。设计M_R有望解决路基含水量的季节性变化。本研究旨在评估俄克拉荷马州特定路基土壤的M_R随压实后含水量和吸力的变化。实验室测试使用沙土(S-Soil)和黏土(C-Soil)。通过改良的压实方法制备要润湿的C-土壤样品。该方法有望在润湿过程中增强样品中的水流。还介绍了用于润湿和干燥样品的新实验室程序,并用于建立M_R,湿度变化和吸力之间的相关性。结果表明,由于湿润和干燥,C-土壤的M_R-水分含量关系显示出滞后行为。对于S-土壤观察到类似的行为。正如预期的那样,C型土壤比S型土壤更容易受到水分变化的影响。还观察到,M_R值和吸力的变化受初始(压实)水分含量的影响。

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