Effect of Heat Input On Mechanical Properties and Microstructure During Resistance Spot Welding Of AlMg2,5

<p align="justify">Aluminium type 5052 or AlMg2,5 is one of the materials used in heat exchanger components such as fan blade. The fan blade formed and joined by resistance spot welding and gas tungsten arc welding. In welding, heat input affects mechanical properties and physical p...

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Main Author: ABDUH FUADI - Nim: 13714022, MUHAMMAD
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/29098
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:29098
spelling id-itb.:290982018-08-16T09:33:28ZEffect of Heat Input On Mechanical Properties and Microstructure During Resistance Spot Welding Of AlMg2,5 ABDUH FUADI - Nim: 13714022, MUHAMMAD Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/29098 <p align="justify">Aluminium type 5052 or AlMg2,5 is one of the materials used in heat exchanger components such as fan blade. The fan blade formed and joined by resistance spot welding and gas tungsten arc welding. In welding, heat input affects mechanical properties and physical properties of weld metal. In this research the parameters are welding current and welding time.. Tensile shear test and hardness test have been used to evaluate the mechanical properties of weld metal. All of specimen failed by interface failure in weld metal during tensile shear tests. The strength of weld metal is affected indirectly by heat input, but welding current ,welding time and weld defects. Tensile shear strength of specimens are around 110-125 MPa and higher than tensile shear strength of base metal (62,5 MPa). Hardness test also applied to examine mechanical properties of material at weld metal, HAZ and base metal. The hardnesses of these regions are relatively equal about 45 – 55 HV. Microstructure analysis is used to examine grain shape and defects in weld metal. Defects in weld metal consist of expulsion, porosity, lack of fusion and crack, because Al5052 is sensitive to crack when resistance spot welded.<p align="justify"> text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description <p align="justify">Aluminium type 5052 or AlMg2,5 is one of the materials used in heat exchanger components such as fan blade. The fan blade formed and joined by resistance spot welding and gas tungsten arc welding. In welding, heat input affects mechanical properties and physical properties of weld metal. In this research the parameters are welding current and welding time.. Tensile shear test and hardness test have been used to evaluate the mechanical properties of weld metal. All of specimen failed by interface failure in weld metal during tensile shear tests. The strength of weld metal is affected indirectly by heat input, but welding current ,welding time and weld defects. Tensile shear strength of specimens are around 110-125 MPa and higher than tensile shear strength of base metal (62,5 MPa). Hardness test also applied to examine mechanical properties of material at weld metal, HAZ and base metal. The hardnesses of these regions are relatively equal about 45 – 55 HV. Microstructure analysis is used to examine grain shape and defects in weld metal. Defects in weld metal consist of expulsion, porosity, lack of fusion and crack, because Al5052 is sensitive to crack when resistance spot welded.<p align="justify">
format Final Project
author ABDUH FUADI - Nim: 13714022, MUHAMMAD
spellingShingle ABDUH FUADI - Nim: 13714022, MUHAMMAD
Effect of Heat Input On Mechanical Properties and Microstructure During Resistance Spot Welding Of AlMg2,5
author_facet ABDUH FUADI - Nim: 13714022, MUHAMMAD
author_sort ABDUH FUADI - Nim: 13714022, MUHAMMAD
title Effect of Heat Input On Mechanical Properties and Microstructure During Resistance Spot Welding Of AlMg2,5
title_short Effect of Heat Input On Mechanical Properties and Microstructure During Resistance Spot Welding Of AlMg2,5
title_full Effect of Heat Input On Mechanical Properties and Microstructure During Resistance Spot Welding Of AlMg2,5
title_fullStr Effect of Heat Input On Mechanical Properties and Microstructure During Resistance Spot Welding Of AlMg2,5
title_full_unstemmed Effect of Heat Input On Mechanical Properties and Microstructure During Resistance Spot Welding Of AlMg2,5
title_sort effect of heat input on mechanical properties and microstructure during resistance spot welding of almg2,5
url https://digilib.itb.ac.id/gdl/view/29098
_version_ 1822922800884613120