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上海理工大学 机械工程学院,上海 200093
余慧杰,男,1978年生,福建南靖人,博士,教授,硕士研究生导师;主要研究方向为电子设备可靠性设计、隔振系统设计;E-mail:hjyu@usst.edu.cn。
倪维宇,男,1986年生,江苏兴化人,硕士,高级实验师;主要研究方向为机械结构动力学优化设计与测试技术;E-mail:niweiyu138@sina.com。
收稿日期:2023-11-27,
修回日期:2024-01-04,
纸质出版日期:2025-07-15
移动端阅览
余慧杰,侯伟平,陈成,等. 复合型金属橡胶的静力学模型研究[J]. 机械强度,2025,47(7):152-158.
YU Huijie,HOU Weiping,CHEN Cheng,et al. Study on the static model of composite metal rubber[J]. Journal of Mechanical Strength,2025,47(7):152-158.
余慧杰,侯伟平,陈成,等. 复合型金属橡胶的静力学模型研究[J]. 机械强度,2025,47(7):152-158. DOI: 10.16579/j.issn.1001.9669.2025.07.019.
YU Huijie,HOU Weiping,CHEN Cheng,et al. Study on the static model of composite metal rubber[J]. Journal of Mechanical Strength,2025,47(7):152-158. DOI: 10.16579/j.issn.1001.9669.2025.07.019.
在静态力学试验的基础上,建立一种复合型金属橡胶(Composite-Metal Rubber
C-MR)的理论模型。采用一种新型制备工艺制备C-MR,对其进行静态力学试验。结合编织型金属橡胶(Wove-Metal Rubber
W-MR)和缠绕型金属橡胶(Tangled-Metal Rubber
T-MR)的静力学模型,建立了C-MR的力学模型,并研究了不同编缠比对C-MR力学特性的影响。试验数据和理论模型对比结果表明,该理论模型能够有效预测C-MR的力学特性。并且发现,编缠比对C-MR的力学特性有显著影响,编缠比越大,C-MR的刚度和阻尼特性越大。研究结论可为C-MR的制备和应用提供理论支持。
A theoretical model of composite metal rubber (C-MR) was established on the basis of static mechanical test. A novel preparation process was used to prepare C-MR
which was subjected to static mechanical tests. The mechanical model of C-MR was established by combining the static mechanical models of wove-metal rubber (W-MR) and tangled-metal rubber (T-MR)
and the effects of different knitting and winding ratios on the mechanical properties of C-MR were investigated. The comparison between the test data and the theoretical model shows that the theoretical model can predict the mechanical properties of C-MR effectively. The results show that the knitting and winding ratio has a significant effect on the mechanical properties of C-MR
and the larger the knitting and winding ratio is
the larger the stiffness and damping properties of C-MR are. The conclusion can provide a theoretical support for the preparation and application of C-MR.
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