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Tensile strength, shear strength, and effective stress for unsaturated sand.

机译:非饱和砂的拉伸强度,剪切强度和有效应力。

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摘要

It is generally accepted in geotechnical engineering that non-cohesive materials such as sands exhibit no or negligible tensile strength. However, there is significant evidence that interparticle forces arising from capillary and other pore-scale force mechanisms increase both the shear and tensile strength of soils. The general behavior of these pore-scale forces, their role in macroscopic stress, strength, and deformation behavior, and the changes that occur in the field under natural or imposed changes in water content remain largely uncertain.;The primary objective of this research was to experimentally examine the manifestation of capillary-induced interparticle forces in partially saturated sands to macroscopic shear strength, tensile strength, and deformation behavior. This was accomplished by conducting a large suite of direct shear and direct tension tests using three gradations of Ottawa sand prepared to relatively "loose" and relatively "dense" conditions over a range of degrees saturation. Results were compared with previous experimental results from similar tests, existing theoretical formulations to define effective stress in unsaturated soil, and a hypothesis proposed to define a direct relationship between tensile strength and effective stress.;The major conclusions obtained from this research include: Theoretical models tended to underpredict measured tensile strength. Analysis of results indicates that shear strength may be reasonably predicted using the sum of tensile strength and total normal stress as an equivalent effective stress (sigma' = sigmat + sigman). Analysis also indicates that Bishop's (1959) effective stress formulation is a reasonable representation for effective stress by setting chi = S and by back-calculating chi from shear tests. Tensile strength and apparent cohesion measured exhibited double-peak behavior as a function of degree of saturation. Relatively dense specimen with water contents approaching the capillary regime start behaving as a loose specimen. Horizontal displacement at failure in tension exhibited double-peak behavior as a function of saturation. The two-peak behavior tends to flatten out as the grain size increases.
机译:在岩土工程中,通常公认的是,非粘性材料(例如沙子)不会显示出抗拉强度或拉伸强度可以忽略不计。但是,有大量证据表明,由毛细作用和其他孔隙尺度作用力机制引起的颗粒间作用力会增加土壤的剪切强度和抗张强度。这些孔隙尺度力的一般行为,它们在宏观应力,强度和变形行为中的作用以及在自然条件下或在含水量变化的情况下在田间发生的变化仍然不确定。以实验方式检查在部分饱和砂土中由毛细管引起的颗粒间力对宏观剪切强度,抗拉强度和变形行为的表现。这是通过使用三个等级的渥太华砂进行大量直接剪切和直接拉力测试而完成的,这些砂被制备为在一定程度的饱和度下相对“松散”和相对“致密”的条件。将结果与类似测试的先前实验结果,现有的定义非饱和土壤中有效应力的理论公式以及提出定义抗张强度与有效应力之间的直接关系的假设进行了比较;这项研究得出的主要结论包括:理论模型往往会低估测得的拉伸强度。结果分析表明,可以使用抗拉强度和总法向应力之和作为等效有效应力(sigma'= sigmat + sigman)合理地预测剪切强度。分析还表明,Bishop(1959)的有效应力公式可以通过设置chi = S并通过从剪切试验中反算出chi来合理表示有效应力。测得的拉伸强度和表观内聚力表现出双峰行为与饱和度的关系。含水量接近毛细管状态的相对稠密的样品开始表现为松散的样品。拉伸破坏时的水平位移表现出双峰行为,即饱和度的函数。随着晶粒尺寸的增大,两峰行为趋于趋于平坦。

著录项

  • 作者

    Baltodano Goulding, Rafael.;

  • 作者单位

    University of Missouri - Columbia.;

  • 授予单位 University of Missouri - Columbia.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 231 p.
  • 总页数 231
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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