一个基于微力学的无otropic构成模型,用于将真实应力张量纳入沙子
Pengqiang Yu1, Hexige Baoyin1, Kejia Wu1
1Department of Civil Engineering, University of Science and Technology Beijing, Beijing 100083, China.
这项研究介绍了一种基于微力学的沙子弹性塑料模型,将粒子接触与宏观行为联系起来. 该模型准确地预测了沙子.
科学领域:
- 地质技术工程 地质技术工程
- 计算力学 计算力学 计算力学
- 材料科学 材料科学 材料科学
背景情况:
- 在微机械层面上,颗粒物质的宏观异构性行为尚未完全被理解.
- 现有的模型往往无法捕捉复杂的应力应变反应和异型强度特征.
- 弥合粒子间相互作用和散装材料特性之间的差距对于准确的地质技术建模至关重要.
研究的目的:
- 为沙子开发一种基于微机械的弹性塑料构成模型.
- 阐明颗粒状材料中宏观的异构性行为的起源.
- 为预测各种负载条件下的沙子行为提供一种普遍适用的模型.
主要方法:
- 基于静态平衡和颗粒微力学的真实应力张量发展.
- 整合了临界状态理论,异型结构进化和基于能量的压力扩散.
- 对不同沙类型的三轴测试,数值模拟和实验数据进行验证.
主要成果:
- 该模型准确量化了定向接触网络分布,并将异型态行为映射到相当的同型态应力空间.
- 它成功地预测了应力应变反应,体积变形和强度依赖负载方向.
- 该模型展示了对传统和复杂应力路径的高预测能力.
结论:
- 拟议的微机械模型有效地捕捉了沙子的异构性行为.
- 该框架为理解颗粒材料力学提供了有效和通用的方法.
- 这项研究通过将微观和宏观规模的现象联系起来,推动了地质工程中的构成模型.
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