Original Research
Metal purity detection using non-target reflectivity plastic optical fiber displacement sensor
N. A. Amila
a
N. N. Adnan
a
G. Krishnan c
F. D. Muhammad
e
N. A. M. Taib
f

a Department of Physics and Chemistry, Faculty of Applied Science and

Technology, Universiti Tun Hussein Onn Malaysia, Pagoh Educational Hub,

84600, Pagoh, Johor, Malaysia

b Photonics Devices and Sensor Research Center (PDSR), Department of Physics and Chemistry, Faculty of Applied Sciences and Technology, Universiti Tun

Hussein Onn Malaysia, Pagoh Educational Hub, 84600, Pagoh, Johor, Malaysia c Department of Physics, Faculty of Science, Universiti Teknologi Malaysia, Johor Bahru, 81310, Johor, Malaysia

d Laser Center, Ibnu-Sina Institute for Scientific and Industrial Research (ISI-SIR), Universiti Teknologi, Malaysia

e Department of Physics, Faculty of Science, University Putra Malaysia, 43400,

UPMSerdang, Selangor, Malaysia

fFaculty of Science and Technology, Universiti Sains Islam Malaysia, Bandar Baru Nilai, 71800 Nilai, Negeri Sembilan, Malaysia


Journal of Optoelectronic and Biomedical Materials 2025, 17(1),15-23; https://doi.org/10.67229/JOBM16264
Submitted:Nov 03, 2024
Accepted:Jan 31, 2025
Published:Aug 17, 2026
+
Cite This Article
N. A. Amila ,N. N. Adnan ,G. Krishnan c ,F. D. Muhammad ,N. A. M. Taib . (2025). Journal of Optoelectronic and Biomedical Materials. Metal purity detection using non-target reflectivity plastic optical fiber displacement sensor, 17(1), ,15-23. https://doi.org/10.67229/JOBM16264
Abstract

A fiber optic displacement sensor (FODS) that uses a fiber probe to detect metal purity based on intensity modulation technique is proposed and demonstrated. A He-Ne laser is used as the light source and three different types of metals which consists of nickel brass, cupronickel, and copper clad-steel are used as the target samples. It is observed that the voltages increase as the metal brightness changes from dark to bright, which consequently depends on the amount of nickel content in the metal. The highest sensitivity of 1.0459 for the front slope is achieved by nickel brass, thus making it useful for close-distance targets.

The proposed system is environment friendly and low cost, with additional advantages of high sensitivity and easy installation. Besides its ability to determine the type of metal sample, this FODS can provide a real-time monitoring system suitable for broader applications in sensor field.

©2026 by the authors. Submitted for possible open access publication under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
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