Experimental Observation and Analytical Modeling of Melting and Solidification during Aluminum Alloy Repair by Turbulence Flow Casting
This paper presents an overview on the state of the art of applicable casting technology for applications in the field of repairing Aluminium Alloy components. Repair process on the Aluminium sample using similar metal has been carried out to investigate the micro-structural effect. Joining occurs a...
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doaj-6e12abcae78342e0b3ca908ec1f8fd652020-11-24T20:42:03ZengHasanuddin UniversityInternational Journal on Smart Material and Mechatronics2356-53142460-075X2017-03-012230Experimental Observation and Analytical Modeling of Melting and Solidification during Aluminum Alloy Repair by Turbulence Flow CastingMuki Satya Permana0Mechanical Engineering Department University of PasundanThis paper presents an overview on the state of the art of applicable casting technology for applications in the field of repairing Aluminium Alloy components. Repair process on the Aluminium sample using similar metal has been carried out to investigate the micro-structural effect. Joining occurs as a result of convection heat transfer of molten flow into the sand mold which melts the existing base metal inside the mold and subsequent solidification. The analytical model has been developed to describe aluminium component repair by Turbulence Flow Casting. The model built is based on heat transfer principle that can handle the phenomena of heat flow. The experimental result and analytical model analyses pointed out that joint quality are greatly affected by parameters of preheating temperature and duration of molten metal flow in the mold. To obtain a desired metallurgical sound at the joint, the optimum temperature and time were adjusted in order to obtain a similarity of microstructure between filler and base metal. This model is aimed to predict the use of the process parameter ranges in order to have the optimum parameters when it is applied to the experiment. The fixed parameters are flow rate, sand ratio, and pouring temperature. The process parameters are preheating temperature and pouring time. It is concluded that anaytical modeling has good agreement with the experimental resulthttp://eng.unhas.ac.id/ijsmm/index.php/ijsmm/article/view/38RepairTurbulence Flow CastingAluminium alloypreheating temperaturepouring timeanalytical model |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Muki Satya Permana |
spellingShingle |
Muki Satya Permana Experimental Observation and Analytical Modeling of Melting and Solidification during Aluminum Alloy Repair by Turbulence Flow Casting International Journal on Smart Material and Mechatronics Repair Turbulence Flow Casting Aluminium alloy preheating temperature pouring time analytical model |
author_facet |
Muki Satya Permana |
author_sort |
Muki Satya Permana |
title |
Experimental Observation and Analytical Modeling of Melting and Solidification during Aluminum Alloy Repair by Turbulence Flow Casting |
title_short |
Experimental Observation and Analytical Modeling of Melting and Solidification during Aluminum Alloy Repair by Turbulence Flow Casting |
title_full |
Experimental Observation and Analytical Modeling of Melting and Solidification during Aluminum Alloy Repair by Turbulence Flow Casting |
title_fullStr |
Experimental Observation and Analytical Modeling of Melting and Solidification during Aluminum Alloy Repair by Turbulence Flow Casting |
title_full_unstemmed |
Experimental Observation and Analytical Modeling of Melting and Solidification during Aluminum Alloy Repair by Turbulence Flow Casting |
title_sort |
experimental observation and analytical modeling of melting and solidification during aluminum alloy repair by turbulence flow casting |
publisher |
Hasanuddin University |
series |
International Journal on Smart Material and Mechatronics |
issn |
2356-5314 2460-075X |
publishDate |
2017-03-01 |
description |
This paper presents an overview on the state of the art of applicable casting technology for applications in the field of repairing Aluminium Alloy components. Repair process on the Aluminium sample using similar metal has been carried out to investigate the micro-structural effect. Joining occurs as a result of convection heat transfer of molten flow into the sand mold which melts the existing base metal inside the mold and subsequent solidification. The analytical model has been developed to describe aluminium component repair by Turbulence Flow Casting. The model built is based on heat transfer principle that can handle the phenomena of heat flow. The experimental result and analytical model analyses pointed out that joint quality are greatly affected by parameters of preheating temperature and duration of molten metal flow in the mold. To obtain a desired metallurgical sound at the joint, the optimum temperature and time were adjusted in order to obtain a similarity of microstructure between filler and base metal. This model is aimed to predict the use of the process parameter ranges in order to have the optimum parameters when it is applied to the experiment. The fixed parameters are flow rate, sand ratio, and pouring temperature. The process parameters are preheating temperature and pouring time. It is concluded that anaytical modeling has good agreement with the experimental result |
topic |
Repair Turbulence Flow Casting Aluminium alloy preheating temperature pouring time analytical model |
url |
http://eng.unhas.ac.id/ijsmm/index.php/ijsmm/article/view/38 |
work_keys_str_mv |
AT mukisatyapermana experimentalobservationandanalyticalmodelingofmeltingandsolidificationduringaluminumalloyrepairbyturbulenceflowcasting |
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1716823405015072768 |