Investigating the effects of gating design on mechanical properties of aluminum alloy in sand casting process

This research aims to analyze the effects of bottom and top gating configurations on mechanical properties of aluminum alloy 6063-T5 in sand casting process. The influence of three most effective process parameters including pouring temperature, runner area and ingate area have been investigated. Em...

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Main Authors: Muhammad Huzaifa Raza, Ahmad Wasim, Muhammad Sajid, Salman Hussain
Format: Article
Language:English
Published: Elsevier 2021-03-01
Series:Journal of King Saud University: Engineering Sciences
Subjects:
UTS
RSM
Online Access:http://www.sciencedirect.com/science/article/pii/S1018363919305914
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spelling doaj-bade3202144b4581ae6a67553dcb1a892021-02-25T04:17:07ZengElsevierJournal of King Saud University: Engineering Sciences1018-36392021-03-01333201212Investigating the effects of gating design on mechanical properties of aluminum alloy in sand casting processMuhammad Huzaifa Raza0Ahmad Wasim1Muhammad Sajid2Salman Hussain3Corresponding author.; Department of Industrial Engineering, University of Engineering & Technology, Taxila, PakistanDepartment of Industrial Engineering, University of Engineering & Technology, Taxila, PakistanDepartment of Industrial Engineering, University of Engineering & Technology, Taxila, PakistanDepartment of Industrial Engineering, University of Engineering & Technology, Taxila, PakistanThis research aims to analyze the effects of bottom and top gating configurations on mechanical properties of aluminum alloy 6063-T5 in sand casting process. The influence of three most effective process parameters including pouring temperature, runner area and ingate area have been investigated. Empirical models for both bottom and top gating configurations have been developed using response surface methodology (RSM). Analysis of variance (ANOVA) and confirmatory experiments have been used to measure adequacy and validity of developed models respectively. Bottom gating was observed as better configuration as compared to top gating configuration with 4.08%–18.78% higher ultimate tensile strength (UTS) and 5.98%–20.60% higher percentage elongation. This resulted due to splashes generated by top gating configuration which severely affected the fluidity of the melt with consequent effects on mechanical properties. Pouring temperature and ingate area have been identified as the most significant process parameters affecting ultimate tensile strength and percentage elongation. Ingate area, on the other hand influences the flow pressure and speed of melt which is required for mold filling. Micro-hardness of the specimens has also been investigated to clarify the effects of gating configuration and input parameters on mechanical properties. To have a deeper insight of the findings, microstructural analysis of casted parts has also been carried out. The findings of this research will provide better insight of bottom and top gated sand casted parts and their effect on mechanical properties.http://www.sciencedirect.com/science/article/pii/S1018363919305914Gating configurationUTSPercentage elongationMechanical propertiesRSM
collection DOAJ
language English
format Article
sources DOAJ
author Muhammad Huzaifa Raza
Ahmad Wasim
Muhammad Sajid
Salman Hussain
spellingShingle Muhammad Huzaifa Raza
Ahmad Wasim
Muhammad Sajid
Salman Hussain
Investigating the effects of gating design on mechanical properties of aluminum alloy in sand casting process
Journal of King Saud University: Engineering Sciences
Gating configuration
UTS
Percentage elongation
Mechanical properties
RSM
author_facet Muhammad Huzaifa Raza
Ahmad Wasim
Muhammad Sajid
Salman Hussain
author_sort Muhammad Huzaifa Raza
title Investigating the effects of gating design on mechanical properties of aluminum alloy in sand casting process
title_short Investigating the effects of gating design on mechanical properties of aluminum alloy in sand casting process
title_full Investigating the effects of gating design on mechanical properties of aluminum alloy in sand casting process
title_fullStr Investigating the effects of gating design on mechanical properties of aluminum alloy in sand casting process
title_full_unstemmed Investigating the effects of gating design on mechanical properties of aluminum alloy in sand casting process
title_sort investigating the effects of gating design on mechanical properties of aluminum alloy in sand casting process
publisher Elsevier
series Journal of King Saud University: Engineering Sciences
issn 1018-3639
publishDate 2021-03-01
description This research aims to analyze the effects of bottom and top gating configurations on mechanical properties of aluminum alloy 6063-T5 in sand casting process. The influence of three most effective process parameters including pouring temperature, runner area and ingate area have been investigated. Empirical models for both bottom and top gating configurations have been developed using response surface methodology (RSM). Analysis of variance (ANOVA) and confirmatory experiments have been used to measure adequacy and validity of developed models respectively. Bottom gating was observed as better configuration as compared to top gating configuration with 4.08%–18.78% higher ultimate tensile strength (UTS) and 5.98%–20.60% higher percentage elongation. This resulted due to splashes generated by top gating configuration which severely affected the fluidity of the melt with consequent effects on mechanical properties. Pouring temperature and ingate area have been identified as the most significant process parameters affecting ultimate tensile strength and percentage elongation. Ingate area, on the other hand influences the flow pressure and speed of melt which is required for mold filling. Micro-hardness of the specimens has also been investigated to clarify the effects of gating configuration and input parameters on mechanical properties. To have a deeper insight of the findings, microstructural analysis of casted parts has also been carried out. The findings of this research will provide better insight of bottom and top gated sand casted parts and their effect on mechanical properties.
topic Gating configuration
UTS
Percentage elongation
Mechanical properties
RSM
url http://www.sciencedirect.com/science/article/pii/S1018363919305914
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