Study of the deformation characteristics of soils with a change in humidity

А. Aitkazina
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Abstract

This paper discusses the anisotropic properties of soils and the issue of the influence of soil wetness on the stress-strain state of an anisotropic foundation. The study of material properties and the nature of these properties is directly related to the origin and structure of the object under study. The most important of them from the point of view of calculations of foundations, design of buildings, and structures are deformation, strength, and filtration anisotropy, which introduce changes to a greater or lesser extent in the stress-strain state of soil massifs. The entire set of physical and mathematical properties of soils is determined by their structure and texture, which, in turn, are formed depending on the composition and genesis of soil deposits, as well as under the influence of external factors leading to the transformation of the stress state of the soil mass. Practically in all experiments in which the deformation, filtration, strength, and other properties of soils were studied in various directions, a difference in their indicators was noted. Such results testify to the anisotropic manifestation of these properties. An elastic (linearly deformable) soil model is considered a design model of soils that make up an anisotropic base.
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湿度变化下土体变形特性的研究
本文讨论了土壤的各向异性特性以及土壤湿度对各向异性地基应力-应变状态的影响问题。材料性质的研究和这些性质的性质直接关系到所研究对象的起源和结构。从基础计算、建筑设计和结构设计的角度来看,其中最重要的是变形、强度和过滤各向异性,它们或多或少地引起土体应力-应变状态的变化。土壤的全部物理和数学性质是由其结构和质地决定的,而这些结构和质地又取决于土壤沉积物的组成和成因,以及导致土体应力状态转变的外部因素的影响。实际上,在所有从不同方向研究土壤的变形、过滤、强度和其他特性的实验中,都注意到它们的指标存在差异。这些结果证明了这些性质的各向异性表现。弹性(线性变形)土模型被认为是构成各向异性地基的土的设计模型。
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