瞬态(计算机编程)
刚度
天然橡胶
磁滞
光学(聚焦)
非线性系统
弹簧(装置)
工程类
气隙(管道)
传输(电信)
控制理论(社会学)
瞬态响应
工作(物理)
大气模式
计算机科学
结构工程
弹簧系统
机制(生物学)
机械
自动变速器
机械工程
模拟
瞬态分析
动压
力动力学
阻尼器
电力传输
作者
Dabing Xiang,Mingyu Wu,Junjie Chen,Jining Cui
标识
DOI:10.1177/09544070251370403
摘要
The dynamic characteristics of air springs are crucial in their production, manufacturing, and intelligent control. However, most existing research and methods focus primarily on studying properties such as hysteresis and dynamic stiffness under steady-state conditions, with limited attention to their transient responses under actual working conditions. This paper introduces a transient characteristic mapping technology that comprehensively considers the dynamic stiffness mechanism model generated by the air spring’s internal gas and rubber diaphragm. The study establishes a nonlinear relationship between the transmission force of the air spring and the measured transient physical quantities. Based on this physical model, a physics-data hybrid-driven framework is developed, which considers the loading sequence and the discrete nature of multi-dimensional physical quantities in the loss function. Experimental results validate the accuracy of the proposed theory, with the error in transient dynamic characteristics controlled within 3.04% for internal pressure and 1.92% for transmission force over the full test set. This provides valuable theoretical support for developing air suspensions under real-world working conditions.
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