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2024 | OriginalPaper | Buchkapitel

Research for Vehicle Idle Vibration Control Based on Ball-Type Constant Velocity Joint

verfasst von : Xu Zhao, Jizhong Zhang, Minghua Li, Kangning Li, Haiming Huang

Erschienen in: Proceedings of China SAE Congress 2023: Selected Papers

Verlag: Springer Nature Singapore

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Abstract

This paper aims to study an optimization design for reducing the vertical transmission force of ball-type constant velocity joint (CVJ), in order to improve vehicle idle vibration. Firstly the vertical transmission force of ball-type CVJ is measured by bench equipment so the correlation between vertical transmission force amplitude and excitation amplitude, loaded torque, shaft length is obtained. Vertical transmission force amplitude of ball-type CVJ has a positive correlation with excitation amplitude and loaded torque, while negative with shaft length. Then vertical transmission force resultant in wheel sides in idle condition is calculated and a vehicle experiment is proceeded to measure cabin floor vertical vibration acceleration in the same condition. Moreover, an example is given to validate there is a strong linear correlation between the estimated values of vertical transmission force in wheel sides and the measured results of vehicle idle shake. Lastly major factors affecting vertical transmission force of ball-type CVJ are analyzed. Vertical transmission force can be restrained by using low friction grease, reducing ball-cage window interfere and enlarging ball pitch circle diameter (PCD) to optimize vehicle idle vibration. Control methods for vehicle idle vibration presented in this paper apply to both the oil-fueled and hybrid electric vehicles with engine.

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Literatur
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Zurück zum Zitat Shen, H.M., Tang, P., Bian, F., et al.: An experimental study of vehicle 1st order vibration improvement at engine idle. Int. J. Acoust. Vibr. 25(4), 542–548 (2020)CrossRef Shen, H.M., Tang, P., Bian, F., et al.: An experimental study of vehicle 1st order vibration improvement at engine idle. Int. J. Acoust. Vibr. 25(4), 542–548 (2020)CrossRef
2.
Zurück zum Zitat Siavoshani, S., Vesikar, P., Yuan, W., et al.: New half shaft bench test methodology for NVH characterization. SAE Technical Paper, 2019-01-1558 (2019) Siavoshani, S., Vesikar, P., Yuan, W., et al.: New half shaft bench test methodology for NVH characterization. SAE Technical Paper, 2019-01-1558 (2019)
3.
Zurück zum Zitat Abbas, A., Sturla, F., Haider, S.: Novel CAE CV joint modelling method for driveline half-shaft at idle condition. SAE Technical Paper, 2020-01-1265 (2020) Abbas, A., Sturla, F., Haider, S.: Novel CAE CV joint modelling method for driveline half-shaft at idle condition. SAE Technical Paper, 2020-01-1265 (2020)
4.
Zurück zum Zitat Yang, L., Wu, X.R., Zhang, S., et al.: Study on idle vibration control of steering system. Noise Vibr. Control 31(5), 80–85 (2011) Yang, L., Wu, X.R., Zhang, S., et al.: Study on idle vibration control of steering system. Noise Vibr. Control 31(5), 80–85 (2011)
5.
Zurück zum Zitat Sa, J.S., Shin, Y.H., Kang, T.W., et al.: A study on the characteristics of idle vibration due to the type of constant velocity joints. Trans. Korean Soc. Automot. Eng. 16, 183–190 (2008) Sa, J.S., Shin, Y.H., Kang, T.W., et al.: A study on the characteristics of idle vibration due to the type of constant velocity joints. Trans. Korean Soc. Automot. Eng. 16, 183–190 (2008)
Metadaten
Titel
Research for Vehicle Idle Vibration Control Based on Ball-Type Constant Velocity Joint
verfasst von
Xu Zhao
Jizhong Zhang
Minghua Li
Kangning Li
Haiming Huang
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-97-0252-7_30

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