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"Ultrasonic flowmeter"

Design and Evaluation of Ultrasonic Flow Meter for High Temperature by Using Finite Element Method
Joo Hee Lee, Chang Il Kim, Jong Hoo Paik, Jeong Ho Cho, Young Hun Jeong, Young Jin Lee, Sahn Nahm
J Electr Electron Mater 2011;24(11):859-864.   Published online November 1, 2011
An operation temperature of Pb(Zr,Ti)O3 based piezoelectric ultrasonic flowmeter was generally restricted to below 200˚C due to a low depoling temperature of its ceramic material. Thus, a new designed piezoelectric ultrasonic flowmeter was fabricated in order to protect from the extremely hot fluid. Its structure is optimized by a finite element method to effectively stop heat flowing along a waveguide. Various materials such as Cu, Al, SUS were examined as a multi-plate radiation shield to enhance the performance of piezoelectric ultrasonic flowmeter. The SUS was evaluated as the most effective material to enhance the performance of piezoelectric ultrasonic flowmeter. As the number of plates of the radiation shield increased, the temperature at piezoelectric transducer away from the hot fluid was constantly decreased with a ratio of 3.12˚C per the plate number.
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