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Influence of structure on shear characteristics of the unsaturated loess in Lanzhou, China

机译:结构对兰州非饱和黄土剪切特性的影响

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摘要

Loess is typically a kind of soil with metastable structure, which makes loess sensitive to collapse and sliding upon wetting. Such structure has thus profound influence on loess's mechanical behavior. However, there have been arguments about how the metastable structure influences on loess's mechanical behavior and what the mechanism behind is. In this study, the influence of structure on shear characteristics of the unsaturated loess in Lanzhou city of China was investigated with comparison of variation of shear strength and its parameters between six pairs of the undisturbed and remolded samples. It is found that the peak shear strength and strength parameters of the loess significantly reduced once its structure was destroyed, while shear behavior of the loess showed little change. Strength parameter c was much more sensitive to structure of the loess than ф. Shear strength reduction of the loess due to change of structure should be largely attributed to breaking up of cementation bonds between particles, evidenced by the difference in pore size distribution and microstructure of soil fabrics between the undisturbed and remolded samples. The bonds provided by clays and carbonates contributed the most to structure of the loess with minor by soluble salts, while matric suction played little role in structure of the loess.
机译:黄土通常是一种具有亚稳结构的土壤,它使黄土对湿润时的塌陷和滑动敏感。因此,这种结构对黄土的机械性能具有深远的影响。然而,关于亚稳结构如何影响黄土的机械行为以及其背后的机理一直存在争议。通过比较六对原样和重塑样品的抗剪强度及其参数的变化,研究了结构对中国兰州非饱和黄土剪切特性的影响。研究发现,一旦破坏了黄土的结构,其峰值抗剪强度和强度参数就会明显降低,而黄土的剪切特性几乎没有变化。强度参数c比ф对黄土的结构更为敏感。由于结构改变而引起的黄土抗剪强度的下降,在很大程度上应归因于颗粒之间的胶结作用的破坏,这由原状和重塑样品之间的孔隙分布和土壤织物的微观结构差异证明。粘土和碳酸盐提供的键对黄土的结构贡献最大,而可溶性盐含量较小,而基质吸力在黄土的结构中作用很小。

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