Sample size effects on the critical state shear strength of granular materials with varied gradation and the role of column-like local structures

IF 4.2 1区 工程技术 Q1 ENGINEERING, GEOLOGICAL Geotechnique Pub Date : 2023-10-24 DOI:10.1680/jgeot.23.00032
David Cantor, Carlos Ovalle
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Abstract

Assessing the shear strength of coarse granular soils is challenging because testing devices in the laboratory often limit the maximum particle size (d max ). While engineering standards define representative elementary volumes (REV) using the aspect ratio α=X/d max , where X is the characteristic sample size, they often disagree on the minimum α, as the effects of sample scale on shear strength are still not well understood. This paper presents a discrete-element study on the combined effect of specimen size and grading on the critical state shear strength of granular materials. The study covers a wide range of aspect ratios and demonstrates that the macroscopic response is stable for α≥15 - which is significantly higher than the standard requirement of α≥10 for simple shear tests. The granular microstructure is also strongly affected by α and the formation of column-like structures of grains carrying strong contact forces, reaching sample size independent conditions only for α≥20. Such column-like structures are shown to be primarily composed of the largest classes of grains, supporting the fact that grading has no effect on the critical state shear strength and d max correctly serves to scale a granular sample to the size of the testing device.
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粒径对不同级配颗粒材料临界状态抗剪强度的影响及柱状局部结构的作用
评估粗颗粒土的抗剪强度是具有挑战性的,因为实验室的测试设备通常限制最大粒径(dmax)。虽然工程标准使用宽高比α=X/d max来定义代表性基本体积(REV),其中X为特征样本量,但由于样本量对抗剪强度的影响仍未得到很好的理解,因此它们在最小α值上往往存在分歧。本文采用离散元法研究了试样尺寸和级配对颗粒材料临界状态抗剪强度的综合影响。研究结果表明,当α≥15时宏观响应稳定,显著高于单纯剪切试验α≥10的标准要求。晶粒的微观结构也受到α的强烈影响,形成具有强接触力的柱状结构,只有当α≥20时才能达到与样品尺寸无关的条件。这种柱状结构显示主要由最大的颗粒类别组成,支持分级对临界状态抗剪强度没有影响的事实,并且dmax正确地用于将颗粒样品缩放到测试装置的尺寸。
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来源期刊
Geotechnique
Geotechnique 工程技术-地球科学综合
CiteScore
9.80
自引率
10.30%
发文量
168
审稿时长
7 months
期刊介绍: Established in 1948, Géotechnique is the world''s premier geotechnics journal, publishing research of the highest quality on all aspects of geotechnical engineering. Géotechnique provides access to rigorously refereed, current, innovative and authoritative research and practical papers, across the fields of soil and rock mechanics, engineering geology and environmental geotechnics.
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