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Modelling tensile/compressive strength ratio of artificially cemented clean sand

机译:人工胶结清洁砂的拉伸/压缩强度比建模

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摘要

The present work proposes a new theoretical model for predicting both the splitting tensile strength (q(t)) and the compressive strength (q(u)) of artificially cemented sand and assesses their ratio for a given material. The proposed model is based on the concept of the superposition of the failure strength contributions of the sand and cement phases. The sand matrix obeys the concept of critical state soil mechanics, while the strength of the cemented phase can be described using the Drucker-Prager failure criterion. The analytical solutions are compared against the results of tests on three different types of cemented clean sand cured for different time periods. While the analytical relation fits the experimental data well, it also provides a theoretical basis for the explanation of some features related to the experimentally derived strength relationships for cemented clean sand. The value of the power relationship between the strength and the porosity/cement ratio index seems to be governed by the soil matrix properties, while the interdependency of the strength and the curing time can also be captured. For a given cemented sand, the model equally confirms the existence of a unique tensile/compressive strength ratio (q(t)/q(u)), independent of the curing time and primarily governed by the compressive to tensile strength ratio (or the friction properties) of the cement. It is also confirmed that the q(t)/q(u) ratio changes within a narrow range for different frictional properties of the cementing phase. (C) 2018 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:本工作提出了一种新的理论模型,用于预测人工胶结砂的劈裂抗拉强度(q(t))和抗压强度(q(u)),并评估给定材料的比例。提出的模型基于沙子和水泥相的破坏强度贡献的叠加概念。砂基质遵循临界状态土壤力学的概念,而胶结相的强度可以使用Drucker-Prager破坏准则进行描述。将分析溶液与在不同时间段固化的三种不同类型的水泥清洁砂的测试结果进行比较。虽然解析关系与实验数据非常吻合,但它也为解释与胶结清洁砂的实验得出的强度关系有关的某些特征提供了理论基础。强度与孔隙率/水泥比指数之间的幂关系值似乎受土壤基质特性支配,而强度与固化时间的相互依存关系也可以捕获。对于给定的水泥砂,该模型同样确认存在唯一的拉伸/抗压强度比(q(t)/ q(u)),与固化时间无关,并且主要由抗压强度与抗拉强度比(或摩擦性能)。还证实对于胶结相的不同摩擦特性,q(t)/ q(u)比在狭窄范围内变化。 (C)2018年由Elsevier B.V.代表日本岩土工程学会制作和托管。

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