Experiment and Simulation on the Ferrofluid Boundary Deformation and Fluctuation Characters of a High-Speed Rotary Seal

Author:

Chen Yibiao11,Yang Lei11,Yao Yao223,Li Decai45,Jiang Yangyang11,Lv Lixiang11,Yao Jie66,Ma Jing7,Wang Changgeng8,Zhang Hongsheng9,Zhou Yuan10

Affiliation:

1. Wenzhou University School of Mechanical and Electrical Engineering, , Wenzhou 325035 , China

2. Wenzhou University School of Mechanical and Electrical Engineering, , Wenzhou 325035 , China ;

3. Hangzhou Kailong Medical Instruments Co., Ltd ., Hangzhou 310000 , China

4. Beijing Jiaotong University School of Mechanical, Electronic and Control Engineering, , Beijing 100044 , China ;

5. Tsinghua University State Key Laboratory of Tribology, , Beijing 100084 , China

6. Beijing Jiaotong University School of Mechanical, Electronic and Control Engineering, , Beijing 100044 , China

7. China Nuclear Power Engineering Co., Ltd. , Beijing 100840 , China

8. Beijing Chuangshiweina Technology Co., Ltd ., Beijing 102208 , China

9. Yangtze Optical Fibre (Qianjiang) Co., Ltd ., Qianjiang 433100 , China

10. Beijing Institute of Spacecraft Environment Engineering, Beijing 100029, China

Abstract

Abstract A ferrofluid seal is a rotary seal widely used in the chemical industry, shipbuilding, aerospace, aviation, and other fields, demonstrating various advantages, such as high reliability, low wear, and low leakage rate. The reason for sealing is that the ferrofluid ring isolates the sealed gas from the atmosphere. Hence, boundary deformation and fluctuation are two significant factors to consider for the design of a ferrofluid seal. However, the ferrofluid boundary is wrapped in the shell and pole shoe, which poses a challenge in direct observation. In this paper, an experimental ferrofluid rotary seal device is presented, which can be used to monitor the boundary changes at different rotational speeds and pressure differences. According to the simulation result, the boundary fluctuation affects the pressure transfer and causes the sealing performance to deteriorate. The ferrofluid boundary obtained through the experiment is essential for an in-depth investigation into the rotary seal failure mechanism for improving the design of the ferrofluid rotary seal.

Funder

National Natural Science Foundation of China

Wenzhou Municipal Science and Technology Bureau

Publisher

ASME International

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