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Using Repeated-Load Triaxial Tests to Evaluate Plastic Strain Potentials in Subgrade Soils

机译:使用重复载荷三轴试验评估路基土壤中的塑性应变势

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摘要

The design and the analysis of flexible pavement systems depend on soil layer characterization, traffic loads, and number of passes. The current AASHTO design method for flexible pavements uses resilient characteristics of subsoils to characterize and determine the structural support of each layer and to design the thickness of the layers. This moduli property, however, does not fully account for the plastic strain or rutting potentials of subsoils, as in the cases in which silt and mixed soils undergo high plastic deformations but possess high resilient properties. A study was initiated to establish a test procedure to use a repeated load triaxial device to measure plastic strain potentials of subgrade soils. Laboratory-compacted soil specimens were subjected to a repeated deviatoric load, determined as a percentage of static deviatoric load at failure under un-consolidated undrained conditions. The plastic strains were monitored during 10,000 repeated load cycles, and the accumulated plastic deformations were determined. The test procedure and test results conducted on two types of soils, a coarse sand and silty sand, are presented. Effects of soil type, compaction moisture content, dry unit weight, confining pressure, and deviatoric stresses on the plastic strains were addressed.
机译:柔性路面系统的设计和分析取决于土壤层的特性,交通负荷和通过次数。当前用于柔性路面的AASHTO设计方法使用地基的弹性特性来表征和确定每一层的结构支撑并设计各层的厚度。但是,这种模量特性不能完全解决底土的塑性应变或车辙的可能性,例如在淤泥和混合土经历高塑性变形但具有高回弹特性的情况下。开始进行一项研究以建立测试程序,该程序使用重复载荷三轴设备测量路基土壤的塑性应变势。实验室压实的土壤样品承受反复的偏斜荷载,确定为在未固结不排水条件下破坏时的静态偏斜荷载的百分比。在10,000次重复载荷循环中监测塑性应变,并确定累积的塑性变形。介绍了在两种类型的土壤(粗砂和粉质砂)上进行的测试程序和测试结果。研究了土壤类型,压实含水量,干重,围压和偏应力对塑性应变的影响。

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