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Influence of quasi-static loading rates on crushable granular materials: A DEM analysis

机译:准静态加载率对抵碎颗粒材料的影响:DEM分析

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Does granular material show strain rate dependent response, especially with quasi-static loading condition? The answer is both yes and no since it depends on various factors like particle shape, size and crushability. In the present study, a micromechanical analysis is carried out using discrete element modelling (DEM) to explore the effects of variation in the loading rates, within/near the quasi-static regime, on the stress-strain response of crushable and non-crushable granular assemblies. The study considers monotonic loading at two different strain rates and a sudden strain rate shift condition. The numerical simulation of one-dimensional (1D) compression shows quasi-static loading, which usually produces rate-independent response, can demonstrate rate-dependent features during particle crushing. The variation in the contact force distribution within the granular assembly at different loading rates, dictates the stress response and the crushing events. Relatively low strain rate compression favors homogeneous crushing involving a large number of particles that consequently reduces the strength via fragments rearrangement. Conversely, high strain rate promotes localized crushing within fewer particles, and thus strain hardening is observed. Sudden strain rate shift within the granular assembly creates a discontinuous velocity profile that hampers the crushing events. (C) 2018 Elsevier B.V. All rights reserved.
机译:颗粒状物质显示应变率依赖性响应,尤其是诸如静态负载条件?答案既是是的,因为它取决于粒子形状,尺寸和压碎性等各种因素。在本研究中,使用离散元素建模(DEM)进行微机械分析,以探讨抵抗和不可抵抗的应力 - 应变响应的加载速率,在准静态状态内/附近的加载速率变化的影响颗粒装配。该研究考虑了两种不同的应变率和突然应变率换档条件的单调负载。一维(1D)压缩的数值模拟显示了通常产生无关速率的准静态负载,可以在粒子破碎期间展示速率依赖性特征。在不同的装载速率下颗粒组件内接触力分布的变化决定了应力响应和破碎事件。相对低的应变速率压缩涉及大量颗粒的均匀破碎,从而通过片段重新排列来降低强度。相反,高应变速率促进在较少的颗粒内局部粉碎,因此观察到应变硬化。粒状组件内的突然应变速率偏移产生不连续的速度曲线,妨碍了破碎事件。 (c)2018 Elsevier B.v.保留所有权利。

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