Water-based binder system for powder injection moulding process

Powder injection moulding has been an effective way of forming metal or ceramic parts with complex geometries such as turbochargers for automobiles and parts for planes. During the process, the metal or ceramic powder will be mixed with a polymer mixture known as binder, which will be removed in the...

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Main Author: Chin, Yiu Kang
Other Authors: Lu Xuehong
Format: Final Year Project
Language:English
Published: 2018
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Online Access:http://hdl.handle.net/10356/73801
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-738012023-03-04T15:37:52Z Water-based binder system for powder injection moulding process Chin, Yiu Kang Lu Xuehong School of Materials Science and Engineering DRNTU::Engineering::Materials Powder injection moulding has been an effective way of forming metal or ceramic parts with complex geometries such as turbochargers for automobiles and parts for planes. During the process, the metal or ceramic powder will be mixed with a polymer mixture known as binder, which will be removed in the final product. This process of binder removal, known as debinding, is traditionally done by submerging the moulded parts in a pool of chemical solvent such as acetone. However, usage of chemical solvent has risen concerns of environmental issues. Therefore, a binder system that can be processed by environmental friendly methods are desirable. In this project, a PEG based binder system that uses water soluble PEG as the primary binder will be reaseached on. Unlike the traditional kind of binder systems that requires chemical solvent to debind, this PEG primary binder can be removed using water instead of conventional chemical solvent during the debinding process, making it a lot environment friendly than previous solvent choices. Various polymers will be mixed with PEG to form the binder system, which then will be mixed together with metal powder and moulded with a powder injection moulding machine. Subsequently, the moulded green part will be debinded and sintered. Mechanical property tests such as tensile test and four-point bending test will be done to determine the feasibility of the binder system. Bachelor of Engineering (Materials Engineering) 2018-04-12T04:35:23Z 2018-04-12T04:35:23Z 2018 Final Year Project (FYP) http://hdl.handle.net/10356/73801 en Nanyang Technological University 49 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Materials
spellingShingle DRNTU::Engineering::Materials
Chin, Yiu Kang
Water-based binder system for powder injection moulding process
description Powder injection moulding has been an effective way of forming metal or ceramic parts with complex geometries such as turbochargers for automobiles and parts for planes. During the process, the metal or ceramic powder will be mixed with a polymer mixture known as binder, which will be removed in the final product. This process of binder removal, known as debinding, is traditionally done by submerging the moulded parts in a pool of chemical solvent such as acetone. However, usage of chemical solvent has risen concerns of environmental issues. Therefore, a binder system that can be processed by environmental friendly methods are desirable. In this project, a PEG based binder system that uses water soluble PEG as the primary binder will be reaseached on. Unlike the traditional kind of binder systems that requires chemical solvent to debind, this PEG primary binder can be removed using water instead of conventional chemical solvent during the debinding process, making it a lot environment friendly than previous solvent choices. Various polymers will be mixed with PEG to form the binder system, which then will be mixed together with metal powder and moulded with a powder injection moulding machine. Subsequently, the moulded green part will be debinded and sintered. Mechanical property tests such as tensile test and four-point bending test will be done to determine the feasibility of the binder system.
author2 Lu Xuehong
author_facet Lu Xuehong
Chin, Yiu Kang
format Final Year Project
author Chin, Yiu Kang
author_sort Chin, Yiu Kang
title Water-based binder system for powder injection moulding process
title_short Water-based binder system for powder injection moulding process
title_full Water-based binder system for powder injection moulding process
title_fullStr Water-based binder system for powder injection moulding process
title_full_unstemmed Water-based binder system for powder injection moulding process
title_sort water-based binder system for powder injection moulding process
publishDate 2018
url http://hdl.handle.net/10356/73801
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