Title of article :
OPTIMIZATION OF MICRO METAL INJECTION MOLDING FOR HIGHEST GREEN STRENGTH BY USING TAGUCHI METHOD
Author/Authors :
Ibrahim, M.H.I. Universiti Kebangsaan Malaysia - Fakulti Kejuruteraan dan Alam Bina, Malaysia , Muhamad, N. Universiti Kebangsaan Malaysia - Fakulti Kejuruteraan dan Alam Bina, Malaysia , Sulong, A.B. Universiti Kebangsaan Malaysia - Fuel Cell Institute, Malaysia , Jamaludin, K.R. Universiti Kebangsaan Malaysia - Fakulti Kejuruteraan dan Alam Bina, Malaysia , Ahmad, S. University of Lahore - University College of Dentistry - Oral Surgery Department, Pakistan , Nor, N.H.M. University Technology Mara - Faculty of mechanical Engineering, Malaysia
From page :
282
To page :
289
Abstract :
Nowadays, micro metal injection molding has become among the promising method in powder metallurgy research to produce small-scale intricate part at an effective process and competitive cost for mass production. The success of injection molding is greatly influenced by feedstock characteristic. This paper investigated the optimization of highest green strength which plays an important characteristic in determining the successful of micro MIM. In this paper, stainless steel SS 316L with D50 = 5.96µm was used with composite binder, which consists of PEG (Polyethelena Glycol), PMMA (Polymethyl Methacrilate) and SA (Stearic Acid). Feedstock with 61.5% with several injection parameters were optimized which highly significant through screening experiment such as injection pressure(A), injection temperature(B), mold temperature(C), injection time(D) and holding time(E). Besides that, interaction effects between injection pressure, injection temperature and mold temperature were also considered to optimize in the Taguchi’s orthogonal array. Analysis of variance (ANOVA) in terms of signal-to-noise ratio (S/N-larger is better) for green strength was also presented in this paper. Result shows that interaction between injection temperature and mold temperature (BxC) give highest significant factor followed by interaction between injection pressure and injection temperature (AxB). Single factor that also contributes to significant optimization are mold temperature(C), injection time(D) and injection pressure(A). This study shows that Taguchi method would be among the best method to solve the problem with minimum number of trials
Keywords :
micro metal injection molding , Taguchi’s orthogonal array , analysis of variance , green strength
Journal title :
International Journal of Mechanical and Materials Engineering
Journal title :
International Journal of Mechanical and Materials Engineering
Record number :
2565873
Link To Document :
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