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首页> 外文期刊>Bulletin of engineering geology and the environment >Correction to: Shear properties and pore structure characteristics of soil–rock mixture under freeze–thaw cycles
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Correction to: Shear properties and pore structure characteristics of soil–rock mixture under freeze–thaw cycles

机译:矫正:冻融循环下土岩混合物的剪切性能和孔隙结构特征

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Soil-rock mixtures (S-RMs) are widely distributed in the shallow surfaces of cold regions that experience frequent freeze-thaw cycles, considerably threatening the stability of the soil-rock slopes on both sides of the road. We examine the S-RM shear strength and deformation characteristics under different freeze-thaw cycles through experiment and simulation. Nuclear magnetic resonance (NMR) was used to analyze the influence of freeze-thaw cycles on the internal pore structure of S-RM and establish the internal relationship between pore structure and shear characteristics under freeze-thaw cycles. Results show that the shear strength parameters of S-RM first decrease, then increase, and finally decrease as the number of freeze-thaw cycles increases; besides, the vertical expansion range of cracks gradually increases during shearing with the number of cycles. Porosity first increases, then decreases, and increases again with the number of freeze-thaw cycles. NMR results showed that S-RM pores had fractal characteristics. According to the fractal dimension, the soil particles inside the sample formed larger aggregates after the first freeze-thaw cycle. After the second-third freeze-thaw cycles, the agglomerated soil particles gradually disintegrate and tend to homogenize. The soil particles cover the surface of the gravel under the skeleton deformation to form an inclusion structure. The subsequent increase in the number of freeze-thaw cycles causes the soil particles attached to the gravels to gradually peel off.
机译:土壤 - 岩石混合物(S-RMS)广泛分布在寒冷地区的浅层表面,经历频繁的冻融循环,大大威胁到道路两侧的土岩石坡的稳定性。通过实验和仿真,研究不同冻融循环下的S-RM剪切强度和变形特性。核磁共振(NMR)用于分析冻融循环对S-RM内部孔隙结构的影响,并建立冻融循环下孔隙结构与剪切特性的内部关系。结果表明,随着冻融循环的数量增加,S-RM首次下降的剪切强度参数首次下降,最终降低;此外,裂缝的垂直膨胀范围在剪切期间逐渐增加,循环次数。孔隙率首先增加,然后减少,再次随着冻融循环的数量而增加。 NMR结果表明,S-RM孔具有分形特性。根据分形尺寸,样品内的土壤颗粒在第一次冷冻循环后形成较大的聚集体。在第二次冻融循环之后,附聚的土壤颗粒逐渐崩解并倾向于均匀化。土壤颗粒在骨架变形下覆盖砾石的表面以形成包涵体结构。随后的冻融循环循环的数量增加导致砾石附着的土壤颗粒逐渐剥离。

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