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一种使用振动橡胶球表征三元乙丙橡胶/氯化丁基橡胶共混物阻尼性能的新方法。

A Novel Method to Characterize the Damping Capacity of EPDM/CIIR Blends Using Vibrating Rubber Balls.

作者信息

Liu Zhixin, Wang Kai, Wu Yongqiang, Zhang Hanxiao, Hao Tianyi, Qi Hongyang, Liu Bosong

机构信息

China Automotive Technology and Research Center Co., Ltd., Tianjin 300300, China.

出版信息

Polymers (Basel). 2024 May 21;16(11):1447. doi: 10.3390/polym16111447.

Abstract

An experimental device fixed with a laser displacement sensor was assembled to investigate the rebound behaviors and damping mechanism of rubber balls prepared with ethylene-propylene-diene monomer (EPDM)/chlorinated butyl rubber (CIIR) blends. The result showed that a prediction model was proposed to characterize the damping capacity by using the rebound height of the rubber balls. The lower rebound height corresponded to better damping capacity. A modified equation relating to the rebound height has been obtained from the theoretical derivation on the basis of the dynamic mechanical analysis, showing that the rebound height was affected by the deformation frequency, the external excitation, and the nature of rubber blends. Furthermore, the energy dissipation rate (EDR), defined by the ratio of the height loss to the rebound time, was proposed to further characterize the damping capacity. The EDR value was shown to be highest for the pure CIIR and lowest for the pure EPDM, exhibiting a decreasing trend with the increase in EPDM content in the rubber blends. It can be expected that the damping capacity of the EPDM/CIIR blends decreases with the decrease in external excitation, the conclusion of which plays a key role in the formulation design of viscoelastic damping rubber materials.

摘要

组装了一个固定有激光位移传感器的实验装置,以研究用三元乙丙橡胶(EPDM)/氯化丁基橡胶(CIIR)共混物制备的橡胶球的回弹行为和阻尼机制。结果表明,提出了一个预测模型,通过橡胶球的回弹高度来表征阻尼能力。回弹高度越低,阻尼能力越好。基于动态力学分析,通过理论推导得到了一个与回弹高度相关的修正方程,表明回弹高度受变形频率、外部激励和橡胶共混物性质的影响。此外,提出了由高度损失与回弹时间之比定义的能量耗散率(EDR),以进一步表征阻尼能力。结果表明,纯CIIR的EDR值最高,纯EPDM的EDR值最低,随着橡胶共混物中EPDM含量的增加呈下降趋势。可以预期,EPDM/CIIR共混物的阻尼能力随外部激励的降低而降低,这一结论在粘弹性阻尼橡胶材料的配方设计中起着关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf6c/11174457/dd9a288cf7a9/polymers-16-01447-g001.jpg

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