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循环冻融-重复加载作用下的砂-粉土混合物的强度特性。

Strength Characteristics of Sand-Silt Mixtures Subjected to Cyclic Freezing-Thawing-Repetitive Loading.

机构信息

School of Civil, Environmental and Architectural Engineering, Korea University, 145, Anam-ro, Seongbuk-gu, Seoul 02841, Korea.

Lyles School of Civil Engineering, Purdue University, 550, Stadium Mall Drive, West Lafayette, IN 47907, USA.

出版信息

Sensors (Basel). 2020 Sep 20;20(18):5381. doi: 10.3390/s20185381.

Abstract

Daily freezing-thawing-repetitive loading is a critical factor affecting soil stability. This study assesses the strength of sand-silt mixtures with various silt fractions (SFs) subjected to cyclic freezing-thawing-repetitive loading. Specimens with SF of 0-100% were prepared with a fixed relative density of 60%. The number of repetitive loadings (N) was 1, 100, and 1000 for each specimen with different SFs. After three cycles of freezing-thawing-repetitive loading, the specimens were frozen at -5 °C for the uniaxial compression test. Test results show that the change in relative density (∆D) increases with the increase in SF up to 30% and decreases as SF increases beyond 30% owing to the change in the void ratio. The volumetric unfrozen water content (θ) increases with the increase in both SF and N owing to the effect of the physicochemical characteristics of soils on small voids. Unconfined compressive strength of sand-dominant mixtures (SF ≤ 30%) is reinforced by ∆D. By contrast, for silt-dominant mixtures (SF > 30%), the unconfined compressive strength decreases with the increase in θ and N due to lubricant role and sands dispersion. Thus, the effects of SF and N should be considered for sand-silt mixtures that have a probability to undergo cyclic freezing-thawing-repetitive loading.

摘要

每日冻融-重复加载是影响土壤稳定性的关键因素。本研究评估了不同含砂量(SF)的砂-粉土混合物在循环冻融-重复加载下的强度。采用固定相对密度为 60%制备了 SF 为 0-100%的试样。对于每个具有不同 SF 的试样,重复加载次数(N)分别为 1、100 和 1000。经过三轮冻融-重复加载后,将试样在-5°C下进行单轴压缩试验。试验结果表明,相对密度变化(∆D)随 SF 的增加而增加,在 SF 增加到 30%之前增加,在 SF 增加超过 30%之后减小,这是由于空隙比的变化。由于土壤的物理化学特性对小空隙的影响,体积未冻水含量(θ)随 SF 和 N 的增加而增加。对于砂为主的混合物(SF ≤ 30%),无侧限抗压强度因 ∆D 而增强。相比之下,对于以粉土为主的混合物(SF > 30%),由于润滑作用和砂的分散,无侧限抗压强度随 θ 和 N 的增加而降低。因此,对于可能经历循环冻融-重复加载的砂-粉土混合物,应考虑 SF 和 N 的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee13/7570540/d08fb32f2ed7/sensors-20-05381-g001.jpg

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