Penerapan Teknologi Las Gesek (Friction Welding) Dalam Proses Penyambungan Dua Buah Pipa Logam Baja Karbon Rendah

Kata kunci: waktu gesek, las gesek, tekanan tempa, baja karbon rendah, pipa air Abstract The welding process of the carbon steel pipe will be abit difficult since during welding it is needed rotary movement of the pipe in order to the operator easily to join the welding. This difficulty can be overc...

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Main Authors: Budi Luwar Sanyoto, Nur Husodo, Sri Bangun Setyawati, Mahirul Mursid
Format: Article
Language:English
Published: Universitas Udayana 2013-02-01
Series:Jurnal Energi Dan Manufaktur
Subjects:
Online Access:https://ojs.unud.ac.id/index.php/jem/article/view/4677
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spelling doaj-299d4199989e4f0c9658964431abebd52020-11-25T01:13:57ZengUniversitas UdayanaJurnal Energi Dan Manufaktur2302-52552541-53282013-02-01514677Penerapan Teknologi Las Gesek (Friction Welding) Dalam Proses Penyambungan Dua Buah Pipa Logam Baja Karbon RendahBudi Luwar SanyotoNur HusodoSri Bangun SetyawatiMahirul MursidKata kunci: waktu gesek, las gesek, tekanan tempa, baja karbon rendah, pipa air Abstract The welding process of the carbon steel pipe will be abit difficult since during welding it is needed rotary movement of the pipe in order to the operator easily to join the welding. This difficulty can be overcome by applying friction welding technology. This method is strongly influenced by friction time, rotation velocity and pressure of the pressing. Therefore it is needed the research to joint the carbon steel pipe by applying friction welding. The variation time for the friction welding test were 15, 20, 25, 30 and 35 second. The process parameters were keep constant. The friction welding machine was operated with 4125 rpm, friction pressure 15 kg/cm2 and pressure about 70 kg/cm2.The specimen obtained was tested for metallographic, hardness test. The metallography test was done recognize the microstructure and the hardness test was conducted to obtain the hardness distribution in the original material, in the HAZ region, and in the welding metal. Analyses for the value of hardness in the three region namely, origin metal, HAZ, and welding metal will be related to the change in microstructure.The longer the time for the friction, the temperature increase respectively. But the increase the temperature affect on the upset value become larger and the sample become shorter. The research for joining with friction welding 4125 rpm, friction pressure 15 kg/cm2 and thresure 70 kg/cm3 can be concluded that frinction time that is recomended is 35 second.Friction welding method can be applied for the joining low carbon steel pipe. The microstructure in the joining was found not significant change that mean there is no change in mechanical propertieshttps://ojs.unud.ac.id/index.php/jem/article/view/4677friction time, Pressure press, low carbon steel, water pipe
collection DOAJ
language English
format Article
sources DOAJ
author Budi Luwar Sanyoto
Nur Husodo
Sri Bangun Setyawati
Mahirul Mursid
spellingShingle Budi Luwar Sanyoto
Nur Husodo
Sri Bangun Setyawati
Mahirul Mursid
Penerapan Teknologi Las Gesek (Friction Welding) Dalam Proses Penyambungan Dua Buah Pipa Logam Baja Karbon Rendah
Jurnal Energi Dan Manufaktur
friction time, Pressure press, low carbon steel, water pipe
author_facet Budi Luwar Sanyoto
Nur Husodo
Sri Bangun Setyawati
Mahirul Mursid
author_sort Budi Luwar Sanyoto
title Penerapan Teknologi Las Gesek (Friction Welding) Dalam Proses Penyambungan Dua Buah Pipa Logam Baja Karbon Rendah
title_short Penerapan Teknologi Las Gesek (Friction Welding) Dalam Proses Penyambungan Dua Buah Pipa Logam Baja Karbon Rendah
title_full Penerapan Teknologi Las Gesek (Friction Welding) Dalam Proses Penyambungan Dua Buah Pipa Logam Baja Karbon Rendah
title_fullStr Penerapan Teknologi Las Gesek (Friction Welding) Dalam Proses Penyambungan Dua Buah Pipa Logam Baja Karbon Rendah
title_full_unstemmed Penerapan Teknologi Las Gesek (Friction Welding) Dalam Proses Penyambungan Dua Buah Pipa Logam Baja Karbon Rendah
title_sort penerapan teknologi las gesek (friction welding) dalam proses penyambungan dua buah pipa logam baja karbon rendah
publisher Universitas Udayana
series Jurnal Energi Dan Manufaktur
issn 2302-5255
2541-5328
publishDate 2013-02-01
description Kata kunci: waktu gesek, las gesek, tekanan tempa, baja karbon rendah, pipa air Abstract The welding process of the carbon steel pipe will be abit difficult since during welding it is needed rotary movement of the pipe in order to the operator easily to join the welding. This difficulty can be overcome by applying friction welding technology. This method is strongly influenced by friction time, rotation velocity and pressure of the pressing. Therefore it is needed the research to joint the carbon steel pipe by applying friction welding. The variation time for the friction welding test were 15, 20, 25, 30 and 35 second. The process parameters were keep constant. The friction welding machine was operated with 4125 rpm, friction pressure 15 kg/cm2 and pressure about 70 kg/cm2.The specimen obtained was tested for metallographic, hardness test. The metallography test was done recognize the microstructure and the hardness test was conducted to obtain the hardness distribution in the original material, in the HAZ region, and in the welding metal. Analyses for the value of hardness in the three region namely, origin metal, HAZ, and welding metal will be related to the change in microstructure.The longer the time for the friction, the temperature increase respectively. But the increase the temperature affect on the upset value become larger and the sample become shorter. The research for joining with friction welding 4125 rpm, friction pressure 15 kg/cm2 and thresure 70 kg/cm3 can be concluded that frinction time that is recomended is 35 second.Friction welding method can be applied for the joining low carbon steel pipe. The microstructure in the joining was found not significant change that mean there is no change in mechanical properties
topic friction time, Pressure press, low carbon steel, water pipe
url https://ojs.unud.ac.id/index.php/jem/article/view/4677
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