Rancang Bangun Mesin Pemanas Akrilik Tipe Turbular Skala Industri Kecil

<p>Acrylic is a material that is often used as a substitute for glass because it has the advantage that it is not easily broken and is lighter than glass. One of the processes of making objects made from acrylic is heating. The heating process that has been carried out by small industries is u...

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Main Authors: Noviyanti Nugraha, M. Khenbakti, Rakha Rakha, Teguh Siswanto, Muraz Muraz, Rizkia Munajat
Format: Article
Language:English
Published: Department of Mechanical Engineering, Faculty of Engineering, Universitas Andalas 2021-04-01
Series:Metal: Jurnal Sistem Mekanik dan Termal
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Online Access:https://metal.ft.unand.ac.id/index.php/metal/article/view/150
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author Noviyanti Nugraha
M. Khenbakti
Rakha Rakha
Teguh Siswanto
Muraz Muraz
Rizkia Munajat
author_facet Noviyanti Nugraha
M. Khenbakti
Rakha Rakha
Teguh Siswanto
Muraz Muraz
Rizkia Munajat
author_sort Noviyanti Nugraha
collection DOAJ
description <p>Acrylic is a material that is often used as a substitute for glass because it has the advantage that it is not easily broken and is lighter than glass. One of the processes of making objects made from acrylic is heating. The heating process that has been carried out by small industries is usually acrylic material heated manually by spraying fire from a gas-tube or using a small heater so that the size of acrylic that can be heated is limited, both in terms of length and thickness. The purpose of this research is to design and manufacture an acrylic heating machine that can be used up to a dimension of 600 mm wide and unlimited in length, and can heat up to a thickness of 10 mm with a continuous heating process and is relatively short. The design and manufacture includes the design of the heating system, the selection of the heater to be used, the design and manufacture of the acrylic table, the drive system and the frame. The test parameters include the maximum heating temperature, the acrylic bending temperature and the heating time. The result of the research is an acrylic heating machine that uses three straight turbular heaters with a 300 Watt heater each, capable of heating acrylic with a thickness of up to 10 mm as the initial process for the bending stage, at a heating dimension of 60 cm wide and unlimited in length. The suitable heating temperature for the bending process is 150<sup>o</sup>C. The average heating time for the thickness 3mm is 91.5 seconds (1.5 minutes), 5mm (2.9 minutes) is 174.2 seconds and 10 mm is 451.3 seconds (7.5 minutes).</p>
format Article
id doaj-art-79ac7616b1e64a719b06dbe3073f6c93
institution Kabale University
issn 2598-1137
2597-4483
language English
publishDate 2021-04-01
publisher Department of Mechanical Engineering, Faculty of Engineering, Universitas Andalas
record_format Article
series Metal: Jurnal Sistem Mekanik dan Termal
spelling doaj-art-79ac7616b1e64a719b06dbe3073f6c932025-02-01T10:20:39ZengDepartment of Mechanical Engineering, Faculty of Engineering, Universitas AndalasMetal: Jurnal Sistem Mekanik dan Termal2598-11372597-44832021-04-0151233210.25077/metal.5.1.23-32.202189Rancang Bangun Mesin Pemanas Akrilik Tipe Turbular Skala Industri KecilNoviyanti Nugraha0M. Khenbakti1Rakha Rakha2Teguh Siswanto3Muraz Muraz4Rizkia Munajat5Institut Teknologi Nasional, BandungInstitut Teknologi Nasional, BandungInstitut Teknologi Nasional, BandungInstitut Teknologi Nasional, BandungInstitut Teknologi Nasional, BandungInstitut Teknologi Nasional, Bandung<p>Acrylic is a material that is often used as a substitute for glass because it has the advantage that it is not easily broken and is lighter than glass. One of the processes of making objects made from acrylic is heating. The heating process that has been carried out by small industries is usually acrylic material heated manually by spraying fire from a gas-tube or using a small heater so that the size of acrylic that can be heated is limited, both in terms of length and thickness. The purpose of this research is to design and manufacture an acrylic heating machine that can be used up to a dimension of 600 mm wide and unlimited in length, and can heat up to a thickness of 10 mm with a continuous heating process and is relatively short. The design and manufacture includes the design of the heating system, the selection of the heater to be used, the design and manufacture of the acrylic table, the drive system and the frame. The test parameters include the maximum heating temperature, the acrylic bending temperature and the heating time. The result of the research is an acrylic heating machine that uses three straight turbular heaters with a 300 Watt heater each, capable of heating acrylic with a thickness of up to 10 mm as the initial process for the bending stage, at a heating dimension of 60 cm wide and unlimited in length. The suitable heating temperature for the bending process is 150<sup>o</sup>C. The average heating time for the thickness 3mm is 91.5 seconds (1.5 minutes), 5mm (2.9 minutes) is 174.2 seconds and 10 mm is 451.3 seconds (7.5 minutes).</p>https://metal.ft.unand.ac.id/index.php/metal/article/view/150mesin pemanasakriliktemperaturbending
spellingShingle Noviyanti Nugraha
M. Khenbakti
Rakha Rakha
Teguh Siswanto
Muraz Muraz
Rizkia Munajat
Rancang Bangun Mesin Pemanas Akrilik Tipe Turbular Skala Industri Kecil
Metal: Jurnal Sistem Mekanik dan Termal
mesin pemanas
akrilik
temperatur
bending
title Rancang Bangun Mesin Pemanas Akrilik Tipe Turbular Skala Industri Kecil
title_full Rancang Bangun Mesin Pemanas Akrilik Tipe Turbular Skala Industri Kecil
title_fullStr Rancang Bangun Mesin Pemanas Akrilik Tipe Turbular Skala Industri Kecil
title_full_unstemmed Rancang Bangun Mesin Pemanas Akrilik Tipe Turbular Skala Industri Kecil
title_short Rancang Bangun Mesin Pemanas Akrilik Tipe Turbular Skala Industri Kecil
title_sort rancang bangun mesin pemanas akrilik tipe turbular skala industri kecil
topic mesin pemanas
akrilik
temperatur
bending
url https://metal.ft.unand.ac.id/index.php/metal/article/view/150
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