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首页> 外文期刊>Australian Geomechanics >PERMANENT DEFORMATION BEHAVIOUR OF TWO VICTORIAN SUBGRADE SOILS UNDER REPEATED LOADING
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PERMANENT DEFORMATION BEHAVIOUR OF TWO VICTORIAN SUBGRADE SOILS UNDER REPEATED LOADING

机译:反复荷载作用下两种维多利亚州路基土的永久变形特性

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Mechanistic design methods of pavement structures require the knowledge of permanent deformation behaviour of subgrade soils under anticipated repeated loading. Limiting subgrade deformation up to an acceptable level is one of the main design philosophies of mechanistic pavement design approaches. In the Austroads pavement design guide, a general subgrade failure criterion is given, which was originally derived from CBR pavement design chart. However, for a proper design, one should know the permanent deformation potential of the subgrade that is being dealt with. In this respect, development of predictive equations tbrough dynamic testing gains importance. This paper presents some of the findings of a continuing research project on permanent deformation and resilient characteristics of subgrade soils. Repeated load triaxial tests were performed for two Victorian fine grained soils, in which the level of loading was defined as percentages of the soil static strength. The permanent deformation test results based on various stress-strength ratios were then analysed by using power model. Correlations between model constants and other parameters such as stresses and soil physical properties were investigated. Stress-strength ratio was found to be highly correlated to the logarithm of permanent strain occurring at the first load application. This was because the inclusion of strength parameter into the model which may also indirectly represent the effect of soil physical properties. Model constants of predictive equations were established by means of regression analysis. Predicted permanent strains were compared with measured strains and Austroads subgrade failure criterion.
机译:路面结构的机械设计方法需要了解在预期的重复荷载下路基土壤的永久变形行为。将路基变形限制在可接受的水平是机械路面设计方法的主要设计理念之一。在《 Austroads路面设计指南》中,给出了一般的路基破坏准则,该准则最初源自CBR路面设计图。但是,对于一种适当的设计,应该知道所要处理的路基的永久变形潜力。在这方面,通过动态测试开发预测方程式变得越来越重要。本文介绍了有关路基土的永久变形和回弹特性的一项持续研究项目的一些发现。对两种维多利亚细粒土壤进行了重复荷载三轴试验,其中荷载水平定义为土壤静强度的百分比。然后使用幂模型分析基于各种应力-强度比的永久变形测试结果。研究了模型常数与其他参数(如应力和土壤物理特性)之间的相关性。发现应力强度比与第一次载荷作用下发生的永久应变的对数高度相关。这是因为将强度参数包括在模型中,这也可以间接表示土壤物理性质的影响。通过回归分析建立了预测方程的模型常数。将预测的永久应变与实测应变和Austroads路基破坏标准进行比较。

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