恢复系数
消散
机械
赫兹
影响
多体系统
经典力学
缩进
磁滞
接触动力学
动量(技术分析)
能量守恒
物理
计算机科学
接触力
接触力学
控制理论(社会学)
机械系统
统计物理学
刚体
运动学
运动方程
有限元法
刚度
数学
结构工程
材料科学
工程类
财务
经济
复合材料
量子力学
热力学
作者
Hamid M. Lankarani,Parviz E. Nikravesh
出处
期刊:Nonlinear Dynamics
[Springer Science+Business Media]
日期:1994-03-01
卷期号:5 (2): 193-207
被引量:188
摘要
One method for predicting the impact response of a multibody system is based on the assumption that the impacting bodies undergo local deformations and the contact forces are continuous. In a continuous analysis, the integration of the system equations of motion is carried out during the period of contact; therefore, a model for evaluating the contact forces is required. In this paper, two such contact force models are presented, both Hertzian in nature and based upon the direct-central impact of two solid particles.At low impact velocities, the energy dissipation during impact can be represented by material damping. A model is constructed based on the general trend of the Hertz contact law in conjuction with a hysteresis damping function. The unknown parameters are determined in terms of a given coefficient of restitution and the impact velocity. When local plasticity effects are the dominant factor accounting for the dissipation of energy at high impact velocities, a Hertzian contact force model with permanent indentation is constructed. Utilizing energy and momentum considerations, the unknown parameters in the model are again evaluated. The two particle models are generalized to an impact analysis between two bodies of a multibody system.
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