Pengukuran Speed dan Impedansi Akustik pada Tanah Liat dengan Memanfaatkan Sinyal Echo Ultrasonik

Each material has its own characteristics, which are represented by the value of speed/ultrasonic wave propagation speed (C) and acoustic impedance/material resistance (Ztl). One technique that can be used to obtain these characteristics is by applying ultrasonic testing. This technique utilizes two...

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Main Authors: Lusiana Lusiana, Agus Indra Gunawan, Bima Sena Bayu Dewantara
Format: Article
Language:English
Published: Universitas Syiah Kuala 2019-09-01
Series:Jurnal Rekayasa Elektrika
Subjects:
Online Access:http://jurnal.unsyiah.ac.id/JRE/article/view/13815
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spelling doaj-e48795c3d3ad42e682d2d310bf9b06dc2020-11-24T21:36:54ZengUniversitas Syiah KualaJurnal Rekayasa Elektrika1412-47852252-620X2019-09-0115210.17529/jre.v15i2.1381510174Pengukuran Speed dan Impedansi Akustik pada Tanah Liat dengan Memanfaatkan Sinyal Echo UltrasonikLusiana Lusiana0Agus Indra Gunawan1Bima Sena Bayu Dewantara2Politeknik Elektronika Negeri SurabayaPoliteknik Elektronika Negeri SurabayaPoliteknik Elektronika Negeri SurabayaEach material has its own characteristics, which are represented by the value of speed/ultrasonic wave propagation speed (C) and acoustic impedance/material resistance (Ztl). One technique that can be used to obtain these characteristics is by applying ultrasonic testing. This technique utilizes two ultrasonic sensors as transmitter (UST) and receiver (USR) to get signal properties from each material. The measurement mechanism is nondestructive testing (NDT) where the material tested is not damaged so it does not change the character of the sample. In this research, material characteristics are represented by reflected signals from material (echo). To process the echo signal data and get the characteristics of the sample, we need a number of data processing algorithms such as Fast Fourier Transform (FFT), Peak Detection, and Grid Search. By processing echo from reflected signals, C and Ztl values can be obtained. From the experimental results obtained, the values of C and Ztl in sample 1 with a density of 1856.97573 g/m3 are C = 636 m/s and Ztl = 474640 Ns/m3, samples 2 with a density of 1792.94208 g/m3 of C = 491 m/s and Ztl = 408080 Ns/m3, while the sample 3 with a density of 1663.85025 g/m3 is C = 434 m/s and Ztl = 405639 Ns/m3. The value of material characterization shown that a dense clay also has higher C and Ztl.http://jurnal.unsyiah.ac.id/JRE/article/view/13815UltrasonicSpeedAcoustic ImpedanceEcho
collection DOAJ
language English
format Article
sources DOAJ
author Lusiana Lusiana
Agus Indra Gunawan
Bima Sena Bayu Dewantara
spellingShingle Lusiana Lusiana
Agus Indra Gunawan
Bima Sena Bayu Dewantara
Pengukuran Speed dan Impedansi Akustik pada Tanah Liat dengan Memanfaatkan Sinyal Echo Ultrasonik
Jurnal Rekayasa Elektrika
Ultrasonic
Speed
Acoustic Impedance
Echo
author_facet Lusiana Lusiana
Agus Indra Gunawan
Bima Sena Bayu Dewantara
author_sort Lusiana Lusiana
title Pengukuran Speed dan Impedansi Akustik pada Tanah Liat dengan Memanfaatkan Sinyal Echo Ultrasonik
title_short Pengukuran Speed dan Impedansi Akustik pada Tanah Liat dengan Memanfaatkan Sinyal Echo Ultrasonik
title_full Pengukuran Speed dan Impedansi Akustik pada Tanah Liat dengan Memanfaatkan Sinyal Echo Ultrasonik
title_fullStr Pengukuran Speed dan Impedansi Akustik pada Tanah Liat dengan Memanfaatkan Sinyal Echo Ultrasonik
title_full_unstemmed Pengukuran Speed dan Impedansi Akustik pada Tanah Liat dengan Memanfaatkan Sinyal Echo Ultrasonik
title_sort pengukuran speed dan impedansi akustik pada tanah liat dengan memanfaatkan sinyal echo ultrasonik
publisher Universitas Syiah Kuala
series Jurnal Rekayasa Elektrika
issn 1412-4785
2252-620X
publishDate 2019-09-01
description Each material has its own characteristics, which are represented by the value of speed/ultrasonic wave propagation speed (C) and acoustic impedance/material resistance (Ztl). One technique that can be used to obtain these characteristics is by applying ultrasonic testing. This technique utilizes two ultrasonic sensors as transmitter (UST) and receiver (USR) to get signal properties from each material. The measurement mechanism is nondestructive testing (NDT) where the material tested is not damaged so it does not change the character of the sample. In this research, material characteristics are represented by reflected signals from material (echo). To process the echo signal data and get the characteristics of the sample, we need a number of data processing algorithms such as Fast Fourier Transform (FFT), Peak Detection, and Grid Search. By processing echo from reflected signals, C and Ztl values can be obtained. From the experimental results obtained, the values of C and Ztl in sample 1 with a density of 1856.97573 g/m3 are C = 636 m/s and Ztl = 474640 Ns/m3, samples 2 with a density of 1792.94208 g/m3 of C = 491 m/s and Ztl = 408080 Ns/m3, while the sample 3 with a density of 1663.85025 g/m3 is C = 434 m/s and Ztl = 405639 Ns/m3. The value of material characterization shown that a dense clay also has higher C and Ztl.
topic Ultrasonic
Speed
Acoustic Impedance
Echo
url http://jurnal.unsyiah.ac.id/JRE/article/view/13815
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