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Development of a void ratio-moisture ratio-net stress framework for the prediction of the volumetric behavior of unsaturated granular materials

机译:孔隙率-水分比-净应力框架的开发,用于预测不饱和粒状材料的体积行为

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Despite extensive research on the behavior of unsaturated fine-grained materials, there is still a lack of understanding of the volumetric behavior of unsaturated granular materials. In this research, a model has been developed to predict the fundamental volumetric behavior of unsaturated granular materials through loading and wetting state paths. In this regard, a loading-wetting surface was developed in a space of void ratio-moisture ratio-net stress. A distinctive feature of the proposed model is the relative simplicity in obtaining the model parameters using conventional geotechnical testing equipment. Two types of recycled granular materials, commonly applied in unbound pavements were used, namely, recycled crushed brick (CB) and excavation waste rock (WR). The uniqueness of the developed surface was evaluated by employing a number of loading and wetting state paths. The results indicate that the developed surface is unique in its loading state paths; however, it only shows uniqueness in its wetting state paths for stress levels greater than 2000 kPa. The proposed model seeks to introduce the application of the unsaturated soil mechanics theory, for predicting the behavior of granular materials in the field, by providing a practical and cost-effective methodology. (C) 2019 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:尽管对不饱和细粒材料的行为进行了广泛的研究,但仍缺乏对不饱和粒状材料的体积行为的了解。在这项研究中,已经开发了一种模型,该模型可以通过加载和润湿状态路径来预测不饱和粒状材料的基本体积行为。就这一点而言,在空隙率-水分比-净应力的空间中形成了载荷润湿表面。提出的模型的一个显着特征是使用传统的岩土工程测试设备获得模型参数的相对简单性。使用了两种通常用于未粘结路面的再生颗粒材料,即再生碎砖(CB)和开挖废石(WR)。通过采用许多加载和润湿状态路径来评估显影表面的唯一性。结果表明,展开后的表面在其加载状态路径中是唯一的。但是,对于应力水平大于2000 kPa的情况,它仅在其润湿状态路径中显示出唯一性。该模型旨在通过提供一种实用且经济高效的方法,介绍非饱和土力学理论的应用,以预测粒状材料在现场的行为。 (C)2019年由Elsevier B.V.代表日本岩土工程学会制作和主持。

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