Influence of Process Parameters on Rapid Prototype Part Using Response Surface Methodology

In this research the influencing process parameters on fused deposition modelling of Acrylonitrile Butadiene Styrene (ABS) parts were studied. The two process parameters, layer thickness and model interior fill style are studied. The specimens were built, tests c...

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Main Authors: Chockalingam Palanisamy, Natarajan Chinnasamy, Karthikeyan Muthu
Format: Article
Language:English
Published: MMU Press 2019-06-01
Series:Journal of Engineering Technology and Applied Physics
Subjects:
Online Access:https://journals.mmupress.com/index.php/jetap/article/view/12/303
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author Chockalingam Palanisamy
Natarajan Chinnasamy
Karthikeyan Muthu
author_facet Chockalingam Palanisamy
Natarajan Chinnasamy
Karthikeyan Muthu
author_sort Chockalingam Palanisamy
collection DOAJ
description In this research the influencing process parameters on fused deposition modelling of Acrylonitrile Butadiene Styrene (ABS) parts were studied. The two process parameters, layer thickness and model interior fill style are studied. The specimens were built, tests carried out to find out the surface roughness quality of the specimens. The results analyzed using Response Surface Methodology (RSM). The result indicates that the specimen Type 1 with the 0.254mm layer thickness and solid model interior fill style is the best specimen among the types of specimens tested.
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spelling doaj.art-9d68a81905f742d4939e9c91db463e832023-03-22T15:15:15ZengMMU PressJournal of Engineering Technology and Applied Physics2682-83832019-06-01114710.33093/jetap.2019.1.1.2Influence of Process Parameters on Rapid Prototype Part Using Response Surface MethodologyChockalingam Palanisamy0Natarajan Chinnasamy1Karthikeyan Muthu2Faculty of Engineering and Technology, Multimedia UniversityDepartment of Mechanical Engineering, Hindustan Institue of TechnologyDepartment of Mechanical Engineering, Raja Rajeswari College of EngineeringIn this research the influencing process parameters on fused deposition modelling of Acrylonitrile Butadiene Styrene (ABS) parts were studied. The two process parameters, layer thickness and model interior fill style are studied. The specimens were built, tests carried out to find out the surface roughness quality of the specimens. The results analyzed using Response Surface Methodology (RSM). The result indicates that the specimen Type 1 with the 0.254mm layer thickness and solid model interior fill style is the best specimen among the types of specimens tested.https://journals.mmupress.com/index.php/jetap/article/view/12/303rapid prototypingsurface roughnessresponse surface methodology
spellingShingle Chockalingam Palanisamy
Natarajan Chinnasamy
Karthikeyan Muthu
Influence of Process Parameters on Rapid Prototype Part Using Response Surface Methodology
Journal of Engineering Technology and Applied Physics
rapid prototyping
surface roughness
response surface methodology
title Influence of Process Parameters on Rapid Prototype Part Using Response Surface Methodology
title_full Influence of Process Parameters on Rapid Prototype Part Using Response Surface Methodology
title_fullStr Influence of Process Parameters on Rapid Prototype Part Using Response Surface Methodology
title_full_unstemmed Influence of Process Parameters on Rapid Prototype Part Using Response Surface Methodology
title_short Influence of Process Parameters on Rapid Prototype Part Using Response Surface Methodology
title_sort influence of process parameters on rapid prototype part using response surface methodology
topic rapid prototyping
surface roughness
response surface methodology
url https://journals.mmupress.com/index.php/jetap/article/view/12/303
work_keys_str_mv AT chockalingampalanisamy influenceofprocessparametersonrapidprototypepartusingresponsesurfacemethodology
AT natarajanchinnasamy influenceofprocessparametersonrapidprototypepartusingresponsesurfacemethodology
AT karthikeyanmuthu influenceofprocessparametersonrapidprototypepartusingresponsesurfacemethodology