Cyclic liquefaction of granular materials with varied forms under multidirectional loads

Shao-Heng He, Zhen-Yu Yin, Zhi Ding
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Abstract

Both liquefaction resistance of granular materials under complex multidirectional cyclic loadings and influence of particle form or morphology on it are poorly understood. This paper presents an experimental investigation on this topic. Round, frosted, concave, and convex glass beads as well as Hong Kong CDG sand were used to prepare samples with varying particle morphologies (i.e., roughness, sphericity, aspect ratio and convexity). Unidirectional and multidirectional cyclic simple shear tests were performed to examine the liquefaction susceptibility and highlight the specific role of various particle morphologies. Results show that the increase of shape irregularity and surface roughness both result in a considerable liquefaction resistance improvement. Moreover, overall shape has a more fundamental effect on liquefaction behaviour than surface roughness. An enhanced morphology index, providing a collective description for the particle geometry and surface texture, are proposed to optimize the correlation with liquefaction behaviour. Besides, it is discovered that multidirectional loading could exacerbate the generation of pore pressure and trigger a sharp increase in shear strain amplitude at a lower excess pore pressure ratio. Accordingly, a novel analytical procedure for estimating the liquefaction resistance independent of cyclic loading patterns and particle morphology is developed and validated by additional data in literature.
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多向载荷作用下不同形态颗粒物料的循环液化
颗粒材料在复杂多向循环载荷作用下的液化阻力以及颗粒形态对液化阻力的影响尚不清楚。本文对这一问题进行了实验研究。使用圆形、磨砂、凹形和凸形玻璃珠以及香港CDG砂制备具有不同颗粒形态(即粗糙度、球度、纵横比和凹凸度)的样品。进行了单向和多向循环单剪试验,以检验液化敏感性,并突出不同颗粒形态的具体作用。结果表明,形状不规则性和表面粗糙度的增加都能显著提高抗液化能力。此外,整体形状比表面粗糙度对液化行为有更根本的影响。提出了一种增强的形态指数,提供了对颗粒几何形状和表面纹理的集体描述,以优化与液化行为的关联。此外,发现多向加载会加剧孔隙压力的产生,在较低的超孔隙压力比下,剪切应变幅值会急剧增加。因此,开发了一种新的分析方法来估计不受循环加载模式和颗粒形态影响的液化阻力,并通过文献中的附加数据进行了验证。
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