The potential of starch as an eco-friendly binder in injection moulding of 316L Stainless steel for medical devices applications
Two starch/wax based binders were formulated for metal injection moulding of 316L stainless steel. The formulations difffer in term of the starch type which substitute the backbone polyethelene. Feedstock having powder loading of the stainless steel powder up to 65 vol.% can be injection moulded suc...
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Trans Tech Publications
2014
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2-s2.0-84898920554 Wahab N.; Omar M.A.; Nordin N.A.; Sauti R. The potential of starch as an eco-friendly binder in injection moulding of 316L Stainless steel for medical devices applications 2014 Advanced Materials Research 911 10.4028/www.scientific.net/AMR.911.200 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84898920554&doi=10.4028%2fwww.scientific.net%2fAMR.911.200&partnerID=40&md5=aea0b12524689abc51580b52a22bb0c2 Two starch/wax based binders were formulated for metal injection moulding of 316L stainless steel. The formulations difffer in term of the starch type which substitute the backbone polyethelene. Feedstock having powder loading of the stainless steel powder up to 65 vol.% can be injection moulded successfully. Solvent debinding was performed in water at a temperature of 600C for 3 hours and followed by immersion n-heptane for duration of 2 hours to remove the residual wax. The remaining binder was thermally extracted at 4500 with heating rate of 30C/min, with no defects. The parts were then sintered in vacuum atmosphere within a temperature range of 1300°C to 1380°C. Approximately, 6.8 g/cm3theoretical density, hardness of 188.8 HV and tensile strength of 229.3 MPawere achieved for cassava starch/wax based binder while rice starch/wax based binder possessed 8.6g/cm3theoretical density, hardness of 385 HV and tensile strength of 462.1 MPa. © (2014) Trans Tech Publications, Switzerland. Trans Tech Publications 10226680 English Conference paper |
author |
Wahab N.; Omar M.A.; Nordin N.A.; Sauti R. |
spellingShingle |
Wahab N.; Omar M.A.; Nordin N.A.; Sauti R. The potential of starch as an eco-friendly binder in injection moulding of 316L Stainless steel for medical devices applications |
author_facet |
Wahab N.; Omar M.A.; Nordin N.A.; Sauti R. |
author_sort |
Wahab N.; Omar M.A.; Nordin N.A.; Sauti R. |
title |
The potential of starch as an eco-friendly binder in injection moulding of 316L Stainless steel for medical devices applications |
title_short |
The potential of starch as an eco-friendly binder in injection moulding of 316L Stainless steel for medical devices applications |
title_full |
The potential of starch as an eco-friendly binder in injection moulding of 316L Stainless steel for medical devices applications |
title_fullStr |
The potential of starch as an eco-friendly binder in injection moulding of 316L Stainless steel for medical devices applications |
title_full_unstemmed |
The potential of starch as an eco-friendly binder in injection moulding of 316L Stainless steel for medical devices applications |
title_sort |
The potential of starch as an eco-friendly binder in injection moulding of 316L Stainless steel for medical devices applications |
publishDate |
2014 |
container_title |
Advanced Materials Research |
container_volume |
911 |
container_issue |
|
doi_str_mv |
10.4028/www.scientific.net/AMR.911.200 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84898920554&doi=10.4028%2fwww.scientific.net%2fAMR.911.200&partnerID=40&md5=aea0b12524689abc51580b52a22bb0c2 |
description |
Two starch/wax based binders were formulated for metal injection moulding of 316L stainless steel. The formulations difffer in term of the starch type which substitute the backbone polyethelene. Feedstock having powder loading of the stainless steel powder up to 65 vol.% can be injection moulded successfully. Solvent debinding was performed in water at a temperature of 600C for 3 hours and followed by immersion n-heptane for duration of 2 hours to remove the residual wax. The remaining binder was thermally extracted at 4500 with heating rate of 30C/min, with no defects. The parts were then sintered in vacuum atmosphere within a temperature range of 1300°C to 1380°C. Approximately, 6.8 g/cm3theoretical density, hardness of 188.8 HV and tensile strength of 229.3 MPawere achieved for cassava starch/wax based binder while rice starch/wax based binder possessed 8.6g/cm3theoretical density, hardness of 385 HV and tensile strength of 462.1 MPa. © (2014) Trans Tech Publications, Switzerland. |
publisher |
Trans Tech Publications |
issn |
10226680 |
language |
English |
format |
Conference paper |
accesstype |
|
record_format |
scopus |
collection |
Scopus |
_version_ |
1809677688716132352 |