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2D metal profile detector using a polymeric fiberoptic sensor
Conference paper

2D metal profile detector using a polymeric fiberoptic sensor

Wei-Shu Hua, Joshua R. Hooks, Nicholas A. Erwin, Wen-Jong Wu and Wei-Chih Wang
Proceedings of SPIE - The International Society for Optical Engineering, Vol.8348, 83482K
2012

Abstract

Ferromagnetic polymer Fiber-optic sensor Metal detector Mmach- zehnder interferometer Polymeric magnetostrictive material Electronic Optical and Magnetic Materials Condensed Matter Physics Computer Science Applications Applied Mathematics Electrical and Electronic Engineering
As sensors become integrated in more applications, interest in magnetostrictive sensor technology has blossomed. Magnetostrictive materials have many advantages and useful applications in daily life, such as high efficient coupling between elastic and polymer material, large displacement, magnetic field sensors, micro actuator and motion motor, etc. The purpose of this paper is to develop a metal sensor which is capable of detecting different geometries and shapes of metal objects. The main configuration is using a Mach-Zehnder fiber-optic interferometer coated with magnetostrictive material. The metal detector system is a novel design of metal detector, easy to fabricate and capable of high sensitivity. In our design, metal detection is made possible by disrupting the magnetic flux density that encompasses the magnetostriction sensor. In this paper, experimental setups are described and metal sensing results are presented. The results of detecting complex metal's geometry and metal's mapping results are discussed. © 2012 SPIE.

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