Test Piece With Double Path Runner System Using Magnesium Molten For High Precision Die-Casting Products
High pressure die casting is a manufacturing process used to produce complex and precise products where molten material is injected into the mold cavity at a very high speed and pressure. Magnesium molding manufacturing are gradually increasing due to the demand on lightweight and sustainable mater...
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Universiti Malaysia Sarawak (UNIMAS)
2018
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my.unimas.ir.336962024-03-21T00:45:53Z http://ir.unimas.my/id/eprint/33696/ Test Piece With Double Path Runner System Using Magnesium Molten For High Precision Die-Casting Products Tan, Ger Lian TJ Mechanical engineering and machinery High pressure die casting is a manufacturing process used to produce complex and precise products where molten material is injected into the mold cavity at a very high speed and pressure. Magnesium molding manufacturing are gradually increasing due to the demand on lightweight and sustainable material. Magnesium has several unique physical properties that is comparable with Aluminium metal. Researches indicates that magnesium metal and its alloys are biodegradable, it has a huge potential to be utilized in biomedical field. In this research, we investigated the potential defects location on a mold cavity and modified correspondingly. The design of cavity in this project is a ‘test piece’, an inspection instrument. Design modelling and relevant parameter is input into ANSYS software for numerical simulation. Novelty runner and gate design (Double Path Runner System) to enhance fluid behavior inside the cavity are discussed in this paper. Universiti Malaysia Sarawak (UNIMAS) 2018 Final Year Project Report NonPeerReviewed text en http://ir.unimas.my/id/eprint/33696/2/Tan%20Ger%20Lian.pdf Tan, Ger Lian (2018) Test Piece With Double Path Runner System Using Magnesium Molten For High Precision Die-Casting Products. [Final Year Project Report] (Unpublished) |
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TJ Mechanical engineering and machinery Tan, Ger Lian Test Piece With Double Path Runner System Using Magnesium Molten For High Precision Die-Casting Products |
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High pressure die casting is a manufacturing process used to produce complex and precise products where molten material is injected into the mold cavity at a very
high speed and pressure. Magnesium molding manufacturing are gradually increasing due to the demand on lightweight and sustainable material. Magnesium has several
unique physical properties that is comparable with Aluminium metal. Researches indicates that magnesium metal and its alloys are biodegradable, it has a huge potential to be utilized in biomedical field. In this research, we investigated the potential defects
location on a mold cavity and modified correspondingly. The design of cavity in this project is a ‘test piece’, an inspection instrument. Design modelling and relevant
parameter is input into ANSYS software for numerical simulation. Novelty runner and gate design (Double Path Runner System) to enhance fluid behavior inside the cavity are discussed in this paper. |
format |
Final Year Project Report |
author |
Tan, Ger Lian |
author_facet |
Tan, Ger Lian |
author_sort |
Tan, Ger Lian |
title |
Test Piece With Double Path Runner System Using Magnesium Molten For High Precision Die-Casting Products |
title_short |
Test Piece With Double Path Runner System Using Magnesium Molten For High Precision Die-Casting Products |
title_full |
Test Piece With Double Path Runner System Using Magnesium Molten For High Precision Die-Casting Products |
title_fullStr |
Test Piece With Double Path Runner System Using Magnesium Molten For High Precision Die-Casting Products |
title_full_unstemmed |
Test Piece With Double Path Runner System Using Magnesium Molten For High Precision Die-Casting Products |
title_sort |
test piece with double path runner system using magnesium molten for high precision die-casting products |
publisher |
Universiti Malaysia Sarawak (UNIMAS) |
publishDate |
2018 |
url |
http://ir.unimas.my/id/eprint/33696/2/Tan%20Ger%20Lian.pdf http://ir.unimas.my/id/eprint/33696/ |
_version_ |
1794644127746359296 |
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13.211869 |