激发频率对振动颗粒球的消散行为的影响
Yan Chen1, Meng Chen1, Kai Zhang2
1School of Mechanical Engineering, Xi'an University of Science and Technology, Xi'an, China.
The European physical journal. E, Soft matter
|August 18, 2023
概括
这项研究揭示了封闭容器内的振动颗粒球中最佳的减噪效果. 密度逆转和莱登效应之间的关键阶段过渡阶段显示出最好的能量消散.
科学领域:
- 物理 物理学 物理
- 颗粒力学 颗粒力学
- 非线性动力学是一种非线性动力学.
背景情况:
- 颗粒状材料在受到外力影响时表现出复杂的行为.
- 了解振动颗粒系统中的能量消耗对于各种应用至关重要.
- 动态运动和减噪效应之间的相互作用需要详细的研究.
研究的目的:
- 为了研究颗粒球在近二维垂直振荡的封闭容器中的散射行为.
- 为了确定最佳的阻尼条件和潜在的机制.
- 探索颗粒相位转换和阻尼效应之间的关系.
主要方法:
- 使用离散元素方法 (DEM) 模拟颗粒球的动态.
- 改变激发频率以分析它们对散射的影响.
- 分析不同颗粒阶段的动态行为和消散效应.
主要成果:
- 揭示了在颗粒密度逆转和颗粒Leidenfrost效应之间的关键阶段过渡阶段的最佳阻尼效应.
- 确定了与这一关键阶段相关的四个高阻尼颗粒相 (HDGP).
- 证明密集的颗粒群体表现出通用动态行为,导致最佳的减压.
结论:
- 澄清了振动颗粒系统中最佳的缓冲机制.
- 阶段过渡关键阶段是最大化能量消耗的关键.
- 密集的颗粒状集群在实现最佳阻尼性能方面发挥着重要作用.
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