Vibration and Aerodynamic Analysis and Optimization Design of a Test Centrifuge

Author:

Deng Chunyan1,He Lidong1ORCID,Tan Zhifu1,Jia Xingyun1

Affiliation:

1. Ministry of Chemical Safety Education Engineering Research Centre, Beijing University of Chemical Technology, Beijing 100029, China

Abstract

Taking a type of test centrifuge as the research object, the finite element model of the test centrifuge was established, the vibration characteristics and aerodynamic performance of the test centrifuge were analyzed, and a structural optimization design of the test centrifuge was carried out. In this paper, the load was applied according to the actual working condition of a type of test centrifuge. The vibration of the mounting seat of the test centrifuge was analyzed, and the structure of the mounting seat was improved. After improvement, the vibration of the mounting seat was 77.38% lower than that of the original mounting seat. Then, the aerodynamic analysis of the test centrifuge was carried out. The analysis results show that the test centrifuge moved more smoothly under the whole-package shell and the fairing, the resistance decreased, and the shaft load decreased. Finally, the fairing of the test centrifuge was optimized. The analysis shows that an increase in the width of the fairing can reduce the resistance coefficient, which is helpful to the stability of the test centrifuge during operation and reduces the unbalanced response of the system caused by air resistance.

Funder

National Science and Technology Major Project

National Natural Science Foundation of China

Beijing Natural Science Foundation

Fundamental Research Funds for the Central Universities

Publisher

MDPI AG

Subject

Engineering (miscellaneous),Materials Science (miscellaneous)

Reference35 articles.

1. Development on Large Scale High-Dynamic Centrifuge for Aviation Equipment;Shen;Meas. Control Technol.,2015

2. Seismic evaluation of offshore wind turbine by geotechnical centrifuge test;Seong;Wind Energy,2019

3. Mohajer, N., Najdovski, Z., and Nahavandi, S. (2019, January 6–8). Design and development of a low-cost high-g centrifuge system(cyclone). Proceedings of the International Conference on Control, Mechatronics and Automation 2019, Delft, The Netherlands.

4. Review on Development of Centrifuge for Scientific Tests;Li;Equip. Environ. Eng.,2015

5. Development of centrifuge for scientific tests;Hu;Mana. Res. Sci. Technol. Achi.,2015

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