Title :
Research of a Giant Magnetostrictive Valve With Internal Cooling Structure
Author :
Li Liyi ; Zhang Chengming ; Yan Baiping ; Li Xiaopeng
Author_Institution :
Harbin Inst. of Technol., Harbin, China
Abstract :
This paper proposes a giant magnetostrictive valve (GMV) which uses a tube giant magnetostrictive material (GMM) rod as the actuator. Based on the analysis of the structure and magnetic field of giant magnetostrictive actuator (GMA), a GMV is designed and manufactured. The output displacement characteristics of the GMA under different temperatures are tested. The maximum magneto-strain is about 1500 ppm and the response time is about 1.8 ms. Compared with the simulation of temperature-rise characteristic computed by finite element analysis software, the results show that the internal cooling effect is significant, and the GMA continues working in a relatively stable temperature range. Then, the test bench of the GMV is set and the flow control characteristic is tested. The results show that the internal cooling on-off type giant magnetostrictive valve has many merits including a fast response speed, a stable working temperature range and high precision flow control.
Keywords :
cooling; electromagnetic actuators; finite element analysis; flow control; magnetostrictive devices; finite element analysis software; giant magnetostrictive actuator; giant magnetostrictive material; giant magnetostrictive valve; high precision flow control; internal cooling structure; magneto-strain; response time; temperature-rise characteristic; Actuators; Magnetic circuits; Magnetic hysteresis; Magnetostriction; Temperature; Valves; Actuator; flow control; magnetostriction; valve;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2011.2157902