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Optimisation of Process Conditions in Powder Injection Moulding of Microsystem Components using Robust Design Method Part 2 – Secondary Design Parameters SCIE SCOPUS

Title
Optimisation of Process Conditions in Powder Injection Moulding of Microsystem Components using Robust Design Method Part 2 – Secondary Design Parameters
Authors
Urval, RLee, SAtre, SVPark, SJGerman, RM
Date Issued
2010-03
Publisher
0032-5899
Abstract
Powder injection moulding (PIM) is a proper fabrication method for microsystem technology components. This paper studies the process control of PIM to create thin walled, high aspect ratio geometries, which can be easily found in microtechnology based electro chemical, mechanical and biological systems (MECS). The powder used in this study is gas atomised 316L stainless steel with a median particle size of 10 mm. The effects of reducing the thickness of high aspect ratio geometries on the secondary design parameters including the maximum wall shear stress, cooling time and standard deviations of the melt front velocity and areas are studied. The study shows process parameters including fill time, feedstock injection temperature, mould wall temperature and switchover position can be optimised using the Taguchi robust design method.
Keywords
Powder injection moulding; Microsystem components; Taguchi robust design; Mould filling simulation; Optimisation
URI
https://oasis.postech.ac.kr/handle/2014.oak/26068
DOI
10.1179/174329008X286613
ISSN
0032-5899
Article Type
Article
Citation
POWDER METALLURGY, vol. 53, no. 2, page. 71 - 81, 2010-03
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