裂前部缺陷的尺寸选择:多个断层平面相互作用和内在的长度尺度
Meng Wang1, Eran Bouchbinder2, Jay Fineberg1
1The Racah Institute of Physics, <a href="https://ror.org/03qxff017">The Hebrew University of Jerusalem</a>, Jerusalem, 91904, Israel.
Physical review letters
|October 25, 2024
概括
材料故障涉及在多个平面上传播的裂,形成复杂的3D结构. 研究人员发现,阶段缺陷大小线性取决于脆性水凝中的断裂能量和消散长度尺度.
科学领域:
- 材料科学 材料科学 材料科学
- 断裂力学 断裂力学 断裂力学
- 软物质物理学 软物质物理学
背景情况:
- 材料故障通常由裂传播来控制.
- 在真实的3D材料中,裂经常涉及多个交叉的断裂平面.
- 这些平面之间的相互作用导致复杂的,不太了解的3D裂结构,如步骤缺陷.
研究的目的:
- 为了研究外平面裂结构的形成和特征,特别是阶段缺陷.
- 确定控制易碎材料中这些阶段缺陷大小的关键参数.
- 建立对三维多个裂纹相互作用的基本理解.
主要方法:
- 在众多脆性水凝中对裂传播的实验研究.
- 对断裂表面的分析,以描述阶段缺陷的形成.
- 测量依赖裂速的断裂能量 (Γ(v)) 和剪切模量 (μ).
主要成果:
- 观察到,当裂前线分割成重叠的平面,由稳定距离 (h_max) 隔开时,形成阶段缺陷.
- 证明了h_max和内在材料长度尺度之间的线性关系.
- 发现的h_max随着非线性弹性长度 (Γ(v) /μ) 和散射长度 (ξ) 线性变化.
结论:
- 脆性水凝中步骤缺陷的大小是由内在材料长度尺度决定的.
- 这些发现为从根本上理解3D多裂纹相互作用提供了一条途径.
- 确定了关键参数 (断裂能量和消散长度) 用于预测稳定的平面外断裂结构.
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