Investigation of mould design and process parameter optimisation of plastic injection moulding for thin wall part

In plastic injection moulding industries such as automotive, packaging and medical, demands for thin wall parts increases for the reason of light weight, lower cycle time, lower part cost and higher productivity. However, a lot of challenges faced by the moulders since the mould and processing param...

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Main Author: Hussin, Azmee
Format: Thesis
Language:English
English
English
Published: 2019
Subjects:
Online Access:http://eprints.uthm.edu.my/471/1/24p%20AZNIZAM%20AHMAD.pdf
http://eprints.uthm.edu.my/471/2/AZNIZAM%20AHMAD%20COPYRIGHT%20DECLARATION.pdf
http://eprints.uthm.edu.my/471/3/AZNIZAM%20AHMAD%20WATERMARK.pdf
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author Hussin, Azmee
author_facet Hussin, Azmee
author_sort Hussin, Azmee
collection UTHM
description In plastic injection moulding industries such as automotive, packaging and medical, demands for thin wall parts increases for the reason of light weight, lower cycle time, lower part cost and higher productivity. However, a lot of challenges faced by the moulders since the mould and processing parameters are critical to produce good quality of thin wall parts. This research describes the mould design and process parameter aspects of thin wall part focusing on tubular shape The aim of the research is to investigate the factors that influence the moulded part quality in terms of part shrinkage and weight. The research begin with development of mould for a polypropylene thin wall tubular part and followed by study on the effect of injection moulding process parameter towards moulded part quality. In order to identify the moulding parameters that influences the moulded part quality, Taguchi optimisation method was employed in the research. Based on the obtained simulation result, the preferred size of runner was diameter of 4 mm, gate size was 1 mm and the gate number was 4 number for actual mould fabrication. On the effect of injection pressure, the result shows that with increasing in injection pressure the part shrinkage reduced and part weight increased. As for the effect of melt temperature, the result shows that with increasing in melt temperature the part shrinkage increased and part weight reduced. As for the optimisation, the result shows that temperature contributed significantly to shrinkage and weight of moulded part. Mould temperature have significant effect to outer diameter shrinkage while melt temperature have significant effect to inner diameter shrinkage.
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spelling uthm.eprints-4712021-07-25T06:58:46Z http://eprints.uthm.edu.my/471/ Investigation of mould design and process parameter optimisation of plastic injection moulding for thin wall part Hussin, Azmee TP1080-1185 Polymers and polymer manufacture In plastic injection moulding industries such as automotive, packaging and medical, demands for thin wall parts increases for the reason of light weight, lower cycle time, lower part cost and higher productivity. However, a lot of challenges faced by the moulders since the mould and processing parameters are critical to produce good quality of thin wall parts. This research describes the mould design and process parameter aspects of thin wall part focusing on tubular shape The aim of the research is to investigate the factors that influence the moulded part quality in terms of part shrinkage and weight. The research begin with development of mould for a polypropylene thin wall tubular part and followed by study on the effect of injection moulding process parameter towards moulded part quality. In order to identify the moulding parameters that influences the moulded part quality, Taguchi optimisation method was employed in the research. Based on the obtained simulation result, the preferred size of runner was diameter of 4 mm, gate size was 1 mm and the gate number was 4 number for actual mould fabrication. On the effect of injection pressure, the result shows that with increasing in injection pressure the part shrinkage reduced and part weight increased. As for the effect of melt temperature, the result shows that with increasing in melt temperature the part shrinkage increased and part weight reduced. As for the optimisation, the result shows that temperature contributed significantly to shrinkage and weight of moulded part. Mould temperature have significant effect to outer diameter shrinkage while melt temperature have significant effect to inner diameter shrinkage. 2019-05 Thesis NonPeerReviewed text en http://eprints.uthm.edu.my/471/1/24p%20AZNIZAM%20AHMAD.pdf text en http://eprints.uthm.edu.my/471/2/AZNIZAM%20AHMAD%20COPYRIGHT%20DECLARATION.pdf text en http://eprints.uthm.edu.my/471/3/AZNIZAM%20AHMAD%20WATERMARK.pdf Hussin, Azmee (2019) Investigation of mould design and process parameter optimisation of plastic injection moulding for thin wall part. Masters thesis, Universiti Tun Hussein Onn Malaysia.
spellingShingle TP1080-1185 Polymers and polymer manufacture
Hussin, Azmee
Investigation of mould design and process parameter optimisation of plastic injection moulding for thin wall part
title Investigation of mould design and process parameter optimisation of plastic injection moulding for thin wall part
title_full Investigation of mould design and process parameter optimisation of plastic injection moulding for thin wall part
title_fullStr Investigation of mould design and process parameter optimisation of plastic injection moulding for thin wall part
title_full_unstemmed Investigation of mould design and process parameter optimisation of plastic injection moulding for thin wall part
title_short Investigation of mould design and process parameter optimisation of plastic injection moulding for thin wall part
title_sort investigation of mould design and process parameter optimisation of plastic injection moulding for thin wall part
topic TP1080-1185 Polymers and polymer manufacture
url http://eprints.uthm.edu.my/471/1/24p%20AZNIZAM%20AHMAD.pdf
http://eprints.uthm.edu.my/471/2/AZNIZAM%20AHMAD%20COPYRIGHT%20DECLARATION.pdf
http://eprints.uthm.edu.my/471/3/AZNIZAM%20AHMAD%20WATERMARK.pdf
work_keys_str_mv AT hussinazmee investigationofmoulddesignandprocessparameteroptimisationofplasticinjectionmouldingforthinwallpart