Effect of Thermal Degradation on High Temperature Ultrasonic Transducer Performance in Small Modular Reactors

Thumbnail Image
Date
2015-01-01
Authors
Bilgunde, Prathamesh
Bond, Leonard
Major Professor
Advisor
Committee Member
Journal Title
Journal ISSN
Volume Title
Publisher
Authors
Person
Bond, Leonard
Professor Emeritus
Research Projects
Organizational Units
Organizational Unit
Organizational Unit
Journal Issue
Is Version Of
Versions
Series
Department
Aerospace EngineeringCenter for Nondestructive Evaluation
Abstract

Prototype ultrasonic NDT transducers for use in immersion in coolants for small modular reactors have shown low signal to noise ratio. The reasons for the limitations in performance at high temperature are under investigation, and include changes in component properties. This current work seeks to quantify the issue of thermal expansion and degradation of the piezoelectric material in a transducer using a finite element method. The computational model represents an experimental set up for an ultrasonic transducer in a pulse-echo mode immersed in a liquid sodium coolant. Effect on transmitted and received ultrasonic signal due to elevated temperature (∼200oC) has been analysed.

Comments

This article is from Physics Procedia 70 (2015): 433–436, doi:10.1016/j.phpro.2015.08.137. Posted with permission.

Description
Keywords
Citation
DOI
Subject Categories
Copyright
Thu Jan 01 00:00:00 UTC 2015
Collections