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首页> 外文期刊>International journal of geomechanics >Development of a New Nonlinear Unified Strength Theory for Geomaterials Based on the Characteristic Stress Concept
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Development of a New Nonlinear Unified Strength Theory for Geomaterials Based on the Characteristic Stress Concept

机译:基于特征应力概念的新型岩土材料非线性统一强度理论的发展

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There is a need for a unified strength criterion, which is a variable suitable for describing the different strength properties of different types of geomaterials. There have been efforts to develop unified strength criteria; however, they are usually based on a mechanistic approach with adjustable failure planes and complex expressions. This study presents an alternative mechanistic approach to developing a simple unified strength theory by an adjustable characteristic stress. The characteristic stress is unique for a certain geomaterial. The frictional rule is used to explain the failure mechanism of geomaterials, and by defining the shear strength as a proportion function of normal stress acting on the failure plane, a new nonlinear unified strength theory is developed, which is similar to the Drucker-Prager strength theory. The strength curves of this theory are a series of continuous and smooth conical loci, which are located between Drucker-Prager and Matsuoka-Nakai strength curves in the deviatoric plane in the principal stress space. Another main advantage of the developed strength theory is that its three parameters (sigma 0, phi c, and phi e) have clear physical meanings and can be determined based on simple laboratory tests. Verifications between the developed theory and experimental data from triaxial tests available from the literature show that this theory is able to reasonably reflect the three-dimensional (3D) strength properties of a variety of geomaterials.
机译:需要统一的强度标准,该标准是适合于描述不同类型的土工材料的不同强度特性的变量。已经在努力制定统一的强度标准;但是,它们通常基于具有可调整故障平面和复杂表达式的机械方法。这项研究提出了一种可替代的机械方法,通过可调节的特征应力来发展简单的统一强度理论。特征应力对于某些土工材料而言是唯一的。用摩擦法则解释了土工材料的破坏机理,通过将抗剪强度定义为作用在破坏面上的正应力的比例函数,建立了一种新的非线性统一强度理论,该理论与德鲁克-普拉格强度相似。理论。该理论的强度曲线是一系列连续且平滑的圆锥形轨迹,它们位于主应力空间中偏斜平面上的Drucker-Prager和Matsuoka-Nakai强度曲线之间。强度理论发展起来的另一个主要优点是它的三个参数(σ0,phi c和phi e)具有明确的物理含义,可以通过简单的实验室测试确定。在已发展的理论与来自文献的三轴试验的实验数据之间的验证表明,该理论能够合理地反映各种土工材料的三维(3D)强度特性。

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