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Frontiers of Mechanical Engineering

ISSN 2095-0233

ISSN 2095-0241(Online)

CN 11-5984/TH

Postal Subscription Code 80-975

2018 Impact Factor: 0.989

Front. Mech. Eng.    2006, Vol. 1 Issue (4) : 429-433    https://doi.org/10.1007/s11465-006-0052-9
Research on the method of cavitations resistance in a piezoelectric pump with 3-dimensional mesh structure
ZHANG Jian-hui1, Bai Heng-jun1, XIA Qi-xiao2, NING Hong-gang3, ONUKI Akiyoshi3
1.College of Mechanical Engineering & Applied Electronic Technology, Beijing Polytechnic University, Beijing 100022, China; 2.College of Mechatronics, Beijing Union University, Beijing 100020, China; 3.Yamagata University, Yamagata 992?8510, Japan;
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Abstract The volume valve piezoelectric pump has received increasing attention from many areas because of its different characteristics such as the absence of chemical pollution and electromagnetic pollution. However, when the pump is working, it produces cavitations and the air bubbles that originate from these will flow out of the pump. Cavitations occurring in the pump will bring out noise and shorten the life of the pump. Furthermore, air bubbles flowing out of the pump will hinder its application in areas such as medical treatment and health care where blood transfusion and infusion are concerned. As a solution to this disadvantage, the CR3DMS (cavitations resistance with 3-dimensional mesh structure) method is developed, which is tested and verified to be effective on not only reducing the occurrence of cavitations and eliminating cavitations  flowing out, but also restraining the emission of noise. In conclusion, the pump with CR3DMS, on the relationship between flow and driving frequency and the relationship between flow and the number of Resistant-Layers in both theory and test, are analyzed.
Issue Date: 05 December 2006
 Cite this article:   
XIA Qi-xiao,ZHANG Jian-hui,Bai Heng-jun, et al. Research on the method of cavitations resistance in a piezoelectric pump with 3-dimensional mesh structure[J]. Front. Mech. Eng., 2006, 1(4): 429-433.
 URL:  
https://academic.hep.com.cn/fme/EN/10.1007/s11465-006-0052-9
https://academic.hep.com.cn/fme/EN/Y2006/V1/I4/429
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