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几何误差对圆柱密封件摩擦行为的影响。

Effect of Geometric Error on Friction Behavior of Cylinder Seals.

作者信息

Lin Ange, Wu Jian, Li Haohao, Li Zhe, Su Benlong, Wang Youshan

机构信息

Center for Rubber Composite Materials and Structures, Harbin Institute of Technology, Weihai 264209, China.

Department of System Design, SVOLT Energy Technology Co., Ltd., Baoding 071000, China.

出版信息

Polymers (Basel). 2021 Oct 7;13(19):3438. doi: 10.3390/polym13193438.

Abstract

The tribological characteristics of the cylinder directly affect the operation accuracy of the pneumatic servo system. However, the geometric error has a significant effect on its tribological behavior and the related research is insufficient. Thus, the dynamic friction process of rubber seals has been investigated considering the influence of geometric errors. Firstly, based on the self-made friction test platform, the friction force of the rubber seals was studied and the influence law of geometric error on the contact area of the rubber seal ring was revealed. Secondly, the numerical model of the friction and contact of the rubber seals for the cylinder segment was developed by using the finite element simulation method and the influence laws of machining errors, such as roundness and straightness on the friction characteristics, were revealed. Finally, synergy effects of roundness and straightness in the friction behavior of rubber seals considering geometric errors was investigated, which lays a foundation for the accurate prediction of cylinder dynamic mechanical properties.

摘要

气缸的摩擦学特性直接影响气动伺服系统的运行精度。然而,几何误差对其摩擦学行为有显著影响,且相关研究不足。因此,考虑几何误差的影响,对橡胶密封件的动态摩擦过程进行了研究。首先,基于自制的摩擦试验平台,研究了橡胶密封件的摩擦力,揭示了几何误差对橡胶密封圈接触面积的影响规律。其次,采用有限元模拟方法建立了气缸段橡胶密封件摩擦与接触的数值模型,揭示了圆度和直线度等加工误差对摩擦特性的影响规律。最后,研究了考虑几何误差时橡胶密封件摩擦行为中圆度和直线度的协同效应,为准确预测气缸动态力学性能奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2602/8512578/8bcd879f6425/polymers-13-03438-g001.jpg

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本文引用的文献

1
Position control of a rodless cylinder in pneumatic servo with actuator saturation.
ISA Trans. 2019 Jul;90:235-243. doi: 10.1016/j.isatra.2019.01.014. Epub 2019 Feb 8.

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