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Purpose: The work presented in this paper might be used for basic data in the design of a lot extruded aluminum products using the variable section extrusion process. Design/methodology/approach: The capacity of a CNC extruder was calculated and decided as analyzing the FEM results performed by commercial software DEFORM-2D. CNC extruder and die set for variable section extrusion was invented by field extrusion experts. Findings: CNC extruder had a key role in variable extrusion process. Furthermore there was few die sets with mold feeding parts for aluminum extrusion. To be capable of extruding aluminum products with variable cross section are CNC extruder and the die set. Research limitations/implications: For future research of developed CNC extruder, frame structures of the extruder would be analyzed and designed using FE analysis. In addition CNC extruder would be operated by the control program for variable section as a PC version. Practical implications: Aluminum parts with variable section would increase as utilizing the CNC extruder and cost price of the parts be down. Many industrial products using the variable section extrusion process would be used in diverse fields. Originality/value: Extruded aluminum part with variable section is rarely used since extruders don't be designed and developed for variable section extrusion. It is important that an extruder with CNC control, which could be easily handled and have accessible software to be operated by field user, are invented. As stated above, CNC extruder is needed for production of industrial products with variable section for today. Therefore design and development of CNC extruder having the die set for mold feeding parts was tackled in this paper as efficient approach using commercial FEM code.
Wydawca
Rocznik
Tom
Strony
175--178
Opis fizyczny
Bibliogr. 15 poz., wykr.
Twórcy
autor
autor
autor
autor
- Advanced Material Processing Team, Korea Institute of Industrial Technology (KITECH), Incheon, 406-840, Korea, hjoon@kitech.re.kr
Bibliografia
- [1] Y. H., Jung, Aluminum alloy material for cars, Transactions of the Korea Society of Automotive Engineers 18 (1996) 38-52.
- [2] F. Vollertsen, A. Sprenger, J. Kraus, H. Arnet, Extrusion, channel, and profile bending, a review, Journal of Materials Processing and Technology 87 (1999) 1-27.
- [3] A. Koewius, Aluminium-Spaceframe-Technologie, Der Leicht-bau des Serienautomobils erreicht eine neue Dimension, Teil lund Teil 2. Aluminium 70 (1934) 38-48.
- [4] J. Adamowski, C. Gambaro, E. Lertora, M. Ponte, M. Szkodo, Analysis of FSW welds made of aluminium alloy AW6082-T6, Archives of Materials Science and Engineering 28/8 (2007) 453-460.
- [5] T. Makiyama, M. Murata, A technical note on the development of prototype CNC variable vertical section extrusion machine, Journal of Materials Processing Technology 159 (2005) 139-144.
- [6] M. Hoshino, Journal of the Japan Society for Technology of Platicity 41 (2000) 453-455.
- [7] S. Murakami, Journal of the Japan Society for Technology of Platicity 41 (2000) 460-465.
- [8] H. J. Choi, S. J. Lim, H. T. Shin, S. Choi, Forming Experiment using Improved CNC Extruder and FE Analysis in Varied Section Extrusion Process, Transactions of the KSTP, Autumn Conference (2007) 128-131.
- [9] H. J. Choi, S. J. Lim, H. T. Shin, S. Choi, Development of CNC Extruder for Variable Cross-section Extrusion Process and its Applied Research, Transactions of the KSTP 17 (2007) 130-134.
- [10] K. Karita, Y. Kohiyama, T. Kobiki, K. Ooshima, M. Hashimoto, Development of Aluminum Frame for Heay-Duty Trucks, Technical Review in Japan 15 (2003) 81-84.
- [11] S. Fukuoka, Journal of the Japan Society for Technology of Platicity 41 (2000) 442-446.
- [12] A. Krauze, M. Kaczmarek, J. Marciniak, Numerical analysis of femur in living and dead phase, Journal of Achievements in Materials and Manufacturing Engineering 26 (2008) 163-166.
- [13] W. Torbacki, Numerical strength and fatigue analysis in application to hydraulic cylinders, Journal of Achievements in Materials and Manufacturing Engineering 25 (2007) 65-68.
- [14] M. S .J. Hashmi, M. D. Islam, A. G. Olabi, Experimental and finite element simulation of formability and failures in multi-layered tubular components, Journal of Achievements in Mate-rials and Manufacturing Engineering 24/1 (2007) 201-218.
- [15] T. Ohashi, H. Ito, K. Shinozaki, S. Ito, H. Watari, Lateral extrusion of a cross fitting with a lost core, Journal of Achievements in Materials and Manufacturing Engineering 24/1 (2007) 413-420.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWAW-0001-0051