Bi-Objective Optimization Design of Heterogeneous Injection Mold Cooling Systems

Author:

Huang Jinhua1,Fadel Georges M.1

Affiliation:

1. Department of Mechanical Engineering Clemson University Clemson, SC 29634-0921

Abstract

This paper presents a two-step methodology for the bi-objective optimization design of heterogeneous injection mold cooling systems to achieve simultaneously fast and uniform cooling. During the first step, a single fundamental mold material selected from the material database is assumed, optimal cooling channels size, location, and coolant flow rate are obtained through a gradient-based optimization method. Based on the optimal results from the first step, the second step further reduces cooling time and increases temperature distribution uniformity at ejection by finding sensitive areas and distributing both fundamental and secondary materials in these areas through a genetic algorithm. A Finite Element Method with the Jacobi Conjugate Gradient scheme is utilized to perform the cyclic and transient cooling simulation. Two illustrations for the optimal methodology are provided.

Publisher

ASME International

Subject

Computer Graphics and Computer-Aided Design,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference35 articles.

1. Tang, L. O., Pochiraju, K., Chassapis, C., and Manoochehri, S., 1998, “A Computer-Aided Optimization Approach for the Design of Injection Mold Cooling Systems,” ASME J. Mech. Des., 120, pp. 165–174.

2. Isayev, Avraam I., 1987, Injection and Compression Molding Fundamentals, Marcel Dekker, New York.

3. Tadmore, Z., and Gogos, C., 1979, Principles of Polymer Processing, Wiley, New York, pp. 584–610.

4. Pye, R., 1989, Injection Mold Design, Longman.

5. Rao, N., 1991, Design Formulas for Plastics Engineers, Hanser.

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