Pengaruh kecepatan gerak torch pemanas pada proses automatic flame hardening terhadap nilai kekerasan dan kekuatan tarik baja karbon medium

Steel material was widely used and obtained in the industry and automotive application. The hardness of the surface area and the ductile of the core were produced by using heat treatment, in this case, automatic flame hardening method was used. The heat treatment process was done in order to increas...

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Main Authors: Andi Purwanto, Teguh Triyono, Sukmaji Indro Cahyono
Format: Article
Language:English
Published: Teknik mesin, Fakultas Teknik, Universitas Sebelas Maret 2018-09-01
Series:Mekanika
Online Access:https://jurnal.uns.ac.id/mekanika/article/view/35127
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spelling doaj-4083d7fa214b48cbb3d9a6ae65fad7cb2020-11-25T03:29:10ZengTeknik mesin, Fakultas Teknik, Universitas Sebelas MaretMekanika1412-79622579-31442018-09-0117210.20961/mekanika.v17i2.3512722778Pengaruh kecepatan gerak torch pemanas pada proses automatic flame hardening terhadap nilai kekerasan dan kekuatan tarik baja karbon mediumAndi Purwanto0Teguh Triyono1Sukmaji Indro Cahyono2Program Studi Teknik Mesin Fakultas Teknik, Universitas Sebelas MaretStaf Pengajar Jurusan Teknik Mesin Universitas Sebelas MaretStaf Pengajar Jurusan Teknik Mesin Universitas Sebelas MaretSteel material was widely used and obtained in the industry and automotive application. The hardness of the surface area and the ductile of the core were produced by using heat treatment, in this case, automatic flame hardening method was used. The heat treatment process was done in order to increase the surface temperature by using a carburizing flame and then the cooling process by using water cooling medium continously followed. The aim of this research was to identify the effect the heating torch velocity on the surface hardness and the tensile strength of the medium carbon steel using the automatic flame hardening process. Some variations were used in this research were heating torch velocities at 10 mm/min, 20 mm/min, 30 mm/min, and 40 mm/min. The results shows that the heating torch velocity at speed 10 mm/min was the most optimal parameter. The maximum hardness of the surface area is reached 398.9 VHN, while the highest tensile strength was 647.3 MPa and the perlit-ferrit phase was also formed. By these results, the hard properties on the surface area and the ductile properties in the middle area of the specimen could be obtained.https://jurnal.uns.ac.id/mekanika/article/view/35127
collection DOAJ
language English
format Article
sources DOAJ
author Andi Purwanto
Teguh Triyono
Sukmaji Indro Cahyono
spellingShingle Andi Purwanto
Teguh Triyono
Sukmaji Indro Cahyono
Pengaruh kecepatan gerak torch pemanas pada proses automatic flame hardening terhadap nilai kekerasan dan kekuatan tarik baja karbon medium
Mekanika
author_facet Andi Purwanto
Teguh Triyono
Sukmaji Indro Cahyono
author_sort Andi Purwanto
title Pengaruh kecepatan gerak torch pemanas pada proses automatic flame hardening terhadap nilai kekerasan dan kekuatan tarik baja karbon medium
title_short Pengaruh kecepatan gerak torch pemanas pada proses automatic flame hardening terhadap nilai kekerasan dan kekuatan tarik baja karbon medium
title_full Pengaruh kecepatan gerak torch pemanas pada proses automatic flame hardening terhadap nilai kekerasan dan kekuatan tarik baja karbon medium
title_fullStr Pengaruh kecepatan gerak torch pemanas pada proses automatic flame hardening terhadap nilai kekerasan dan kekuatan tarik baja karbon medium
title_full_unstemmed Pengaruh kecepatan gerak torch pemanas pada proses automatic flame hardening terhadap nilai kekerasan dan kekuatan tarik baja karbon medium
title_sort pengaruh kecepatan gerak torch pemanas pada proses automatic flame hardening terhadap nilai kekerasan dan kekuatan tarik baja karbon medium
publisher Teknik mesin, Fakultas Teknik, Universitas Sebelas Maret
series Mekanika
issn 1412-7962
2579-3144
publishDate 2018-09-01
description Steel material was widely used and obtained in the industry and automotive application. The hardness of the surface area and the ductile of the core were produced by using heat treatment, in this case, automatic flame hardening method was used. The heat treatment process was done in order to increase the surface temperature by using a carburizing flame and then the cooling process by using water cooling medium continously followed. The aim of this research was to identify the effect the heating torch velocity on the surface hardness and the tensile strength of the medium carbon steel using the automatic flame hardening process. Some variations were used in this research were heating torch velocities at 10 mm/min, 20 mm/min, 30 mm/min, and 40 mm/min. The results shows that the heating torch velocity at speed 10 mm/min was the most optimal parameter. The maximum hardness of the surface area is reached 398.9 VHN, while the highest tensile strength was 647.3 MPa and the perlit-ferrit phase was also formed. By these results, the hard properties on the surface area and the ductile properties in the middle area of the specimen could be obtained.
url https://jurnal.uns.ac.id/mekanika/article/view/35127
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