OPTIMAL DESIGN OF COOLING SYSTEM FOR THE PLASTIC INJECTION MOLDS
Abstract
In this paper is presented an optimal design method with evolutionary algorithms cooling system from a mold. Watch a channel to maximize cooling surfaces to reduce cooling time, which implicitly leads to increased productivity.
Key words: optimal design, evolutionary algorithms, cooling system, pneumatic ejector.Full Text:
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Balázs, P., Haragâş, S., (2004): Proiectarea matriţelor de injectat, Ed. Todesco, Cluj-Napoca.
Canta, T., Mociran, M., (1988): Acţionări Hidraulice şi Pneumatice, partea a II-a, Acţionări Pneumatice, Lito. I.P. C-N.
Demian, T., Banu, V., (1984): Micromotoare Pneumatice Liniare şi Rotative, Ed. Tehnică, Bucureşti.
Haragâş, S., Tudose, L., Stănescu, C., Buiga, O. (2009): Dynamics of pneumatic ejection systems of the plastic injection molds. in Acta Technica Napocensis, series: Applied Mathematics and Mechanics, 52, vol. III, pag.247-254.
Menges, G., Michaeli, W., Mohren, P., (2001): How to Make Injection Molds, third edition, Hanser Publishers, Munich, Viena, New York, Barcelona.
Şereş, I., (1999): Matriţe de Injectat, Ed. Imprimeriei de Vest, Oradea.
Tudose, L., ş.a. (2006): Proiectarea optimală a sistemelor complexe, Ed. Mediamira, Cluj-Napoca.
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