Physico-chemical nature of clayey soils strength

F. S. Karpenko, Ф С Карпенко
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Abstract

The principles of soil mechanics based on Mohr–Coulomb strength theory and Terzaghi effective stresses theory give us the idea about the nature of clay strength. However, these theories consider the clay as a solid body and do not take into account their internal structure. In the present paper, the problems in determining the strength of clayey soils are considered from the standpoint of the physicochemical theory of effective stresses. This theory is based on the ideas of the internal structure of clays. The main idea implies that the structure of clays depends on the contacts formed between mineral particles, where the external stresses transmitted to the soil are concentrating. Water in clayey soils not only fills the pore space but also interacts with the mineral particles forming hydrate films around them. The prevailing type of structural contacts in clays determines the properties of latter. Strength is an intrinsic property of soil determined by its composition and internal structure, independent of the conditions of load application to it and characterized by the actual effective strength value. The value of actual effective strength in clays is determined by the total strength of individual contacts. This is the maximal stress transferred to the soil contacts, the structure being ruined upon exceeding this value. The actual effective strength in soils with the same predominant type of contacts depends on the number of contacts. The numerical strength characteristics of contact types are determined for different clay soil varieties to characterize the actual effective strength. The parameters of relationship between the actual effective strength in clays and their strength characteristics are obtained from the soil testing by standard methods.
粘性土强度的物理化学性质
基于Mohr-Coulomb强度理论和Terzaghi有效应力理论的土力学原理使我们对粘土强度的本质有了认识。然而,这些理论认为粘土是一个固体,没有考虑到它们的内部结构。本文从有效应力的物理化学理论出发,讨论了确定粘性土强度的问题。这一理论是以粘土的内部结构为基础的。其主要思想是,粘土的结构取决于矿物颗粒之间形成的接触,传递给土壤的外部应力集中在那里。粘土中的水不仅填满孔隙空间,而且与周围的矿物颗粒相互作用,形成水合物膜。粘土中主要的结构接触类型决定了后者的性质。强度是由土的组成和内部结构决定的土的固有特性,不受荷载作用条件的影响,以实际有效强度值为特征。粘土的实际有效强度值是由单个接触的总强度决定的。这是传递到土壤接触处的最大应力,超过这个值结构就会被破坏。具有相同主要接触类型的土壤的实际有效强度取决于接触的数量。确定了不同粘土品种接触类型的数值强度特征,以表征其实际有效强度。粘土的实际有效强度与其强度特性之间的关系参数是用标准方法从试验土中得到的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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