粒状材料
膨胀(度量空间)
耗散系统
材料科学
本构方程
可塑性
机械
收缩(语法)
空隙(复合材料)
多孔性
结构化
干扰
正多边形
结构工程
复合材料
压力(语言学)
流量(数学)
多孔介质
膨胀的
孔隙比
产量(工程)
粒度计算
塑性理论
计算机科学
统计物理学
岩土工程
数学
作者
Y. Tang,Chunshun Zhang
出处
期刊:Geotechnique
[ICE Publishing]
日期:2026-09-10
卷期号:: 1-15
标识
DOI:10.1680/jgeot.25.00513
摘要
Crushable granular materials exhibit complex mechanical behaviour due to the interplay between crushing, contraction and dilation. Traditional constitutive models often struggle to capture these coupled effects and rely heavily on employing more fitting parameters. To address these gaps, this study presents a novel energy-based constitutive model for addressing the crushing–contraction–dilation coupling issues of crushable granular materials. A novel formulation for gradation-dependent bounds on void ratio is first described, followed by the proposal of a novel dissipative framework to incorporate the effect of dilation. Subsequently, a convex and gradation-density-dependent yield criterion is developed, which further assists in structuring the gradation-dependent critical state lines to enable the classification of dilative and contractive regimes under different gradations. Next, plastic and crushing flow rules are also constructed, ensuring the strict non-negativity of total dissipation. Last, the model is validated against experimental data under varied loading paths, stress levels, initial densities and materials.
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