Dielectric material measurement method: a review / Muhammad Al-Hadi Zable … [et al.]

Non-destructive testing (NDT) is one of many techniques that have been developed over the years to facilitate the process of evaluating and inspecting material properties in a wide range of applications. These techniques can be used on materials such as metals, ceramics, composites, and coatings to...

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Main Authors: Zable, Muhammad Al-Hadi, Ismail Khan, Zuhani, Abdul Rashid, Nur Emileen, Zakaria, Nor Ayu Zalina, Ibrahim, Idnin Pasya, Ab Rahim, Siti Amalina, Mahmood, Mohd Khairil Adzhar
Format: Article
Language:English
Published: UiTM Press 2023
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Online Access:https://ir.uitm.edu.my/id/eprint/76353/1/76353.pdf
https://ir.uitm.edu.my/id/eprint/76353/
https://jeesr.uitm.edu.my/
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Institution: Universiti Teknologi Mara
Language: English
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spelling my.uitm.ir.763532023-04-13T06:24:53Z https://ir.uitm.edu.my/id/eprint/76353/ Dielectric material measurement method: a review / Muhammad Al-Hadi Zable … [et al.] jeesr Zable, Muhammad Al-Hadi Ismail Khan, Zuhani Abdul Rashid, Nur Emileen Zakaria, Nor Ayu Zalina Ibrahim, Idnin Pasya Ab Rahim, Siti Amalina Mahmood, Mohd Khairil Adzhar Probes (Electronic instruments) Non-destructive testing (NDT) is one of many techniques that have been developed over the years to facilitate the process of evaluating and inspecting material properties in a wide range of applications. These techniques can be used on materials such as metals, ceramics, composites, and coatings to assess the material properties without modifying the entire properties and damaging the material structure. Owing to a few limitations associated with NDT methods toward dielectric materials, microwave-based testing such as microwave non-destructive testing (MNDT) appears to be recognized and preferred for penetrating the dielectric material. The method, which implies employing high-frequency energy ranging from 300 MHz to 300 GHz, could extract the dielectric properties of permittivity and permeability, which will be important in characterizing dielectric materials. In this paper, the four categories of resonator method, resonant perturbation method, reflection method, and transmission-reflection method within each measurement system have been reviewed. Each of the measurement methods serves particular principles and applications with respect to its frequency range, benefits, constraints, type of material tested, and accuracy. Based on the research findings, these methods have contributed to various fields of dielectric material characterization (solids, liquids, and gases), inspection of layered composites, surface crack detection, biological application, and also sensors design. UiTM Press 2023-04 Article PeerReviewed text en https://ir.uitm.edu.my/id/eprint/76353/1/76353.pdf Dielectric material measurement method: a review / Muhammad Al-Hadi Zable … [et al.]. (2023) Journal of Electrical and Electronic Systems Research (JEESR), 22: 3. pp. 19-28. ISSN 1985-5389 https://jeesr.uitm.edu.my/
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Probes (Electronic instruments)
spellingShingle Probes (Electronic instruments)
Zable, Muhammad Al-Hadi
Ismail Khan, Zuhani
Abdul Rashid, Nur Emileen
Zakaria, Nor Ayu Zalina
Ibrahim, Idnin Pasya
Ab Rahim, Siti Amalina
Mahmood, Mohd Khairil Adzhar
Dielectric material measurement method: a review / Muhammad Al-Hadi Zable … [et al.]
description Non-destructive testing (NDT) is one of many techniques that have been developed over the years to facilitate the process of evaluating and inspecting material properties in a wide range of applications. These techniques can be used on materials such as metals, ceramics, composites, and coatings to assess the material properties without modifying the entire properties and damaging the material structure. Owing to a few limitations associated with NDT methods toward dielectric materials, microwave-based testing such as microwave non-destructive testing (MNDT) appears to be recognized and preferred for penetrating the dielectric material. The method, which implies employing high-frequency energy ranging from 300 MHz to 300 GHz, could extract the dielectric properties of permittivity and permeability, which will be important in characterizing dielectric materials. In this paper, the four categories of resonator method, resonant perturbation method, reflection method, and transmission-reflection method within each measurement system have been reviewed. Each of the measurement methods serves particular principles and applications with respect to its frequency range, benefits, constraints, type of material tested, and accuracy. Based on the research findings, these methods have contributed to various fields of dielectric material characterization (solids, liquids, and gases), inspection of layered composites, surface crack detection, biological application, and also sensors design.
format Article
author Zable, Muhammad Al-Hadi
Ismail Khan, Zuhani
Abdul Rashid, Nur Emileen
Zakaria, Nor Ayu Zalina
Ibrahim, Idnin Pasya
Ab Rahim, Siti Amalina
Mahmood, Mohd Khairil Adzhar
author_facet Zable, Muhammad Al-Hadi
Ismail Khan, Zuhani
Abdul Rashid, Nur Emileen
Zakaria, Nor Ayu Zalina
Ibrahim, Idnin Pasya
Ab Rahim, Siti Amalina
Mahmood, Mohd Khairil Adzhar
author_sort Zable, Muhammad Al-Hadi
title Dielectric material measurement method: a review / Muhammad Al-Hadi Zable … [et al.]
title_short Dielectric material measurement method: a review / Muhammad Al-Hadi Zable … [et al.]
title_full Dielectric material measurement method: a review / Muhammad Al-Hadi Zable … [et al.]
title_fullStr Dielectric material measurement method: a review / Muhammad Al-Hadi Zable … [et al.]
title_full_unstemmed Dielectric material measurement method: a review / Muhammad Al-Hadi Zable … [et al.]
title_sort dielectric material measurement method: a review / muhammad al-hadi zable … [et al.]
publisher UiTM Press
publishDate 2023
url https://ir.uitm.edu.my/id/eprint/76353/1/76353.pdf
https://ir.uitm.edu.my/id/eprint/76353/
https://jeesr.uitm.edu.my/
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