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http://dx.doi.org/10.9725/kstle.2005.21.4.185

Optimized Design of a Press Cutter by a Taguchi's Experimental Method  

Han, Joo-Hyun (Tribology Research Center, Hongik University)
Kim, Chung-Kyun (Tribology Research Center, Hongik University)
Publication Information
Tribology and Lubricants / v.21, no.4, 2005 , pp. 185-192 More about this Journal
Abstract
The press cutter is productive equipment that practically manufactures mechanical components and polymer-based materials such as fabrics, papers, films, leathers, and rubbers into the desired shapes using a press cutting tool. The plate cutting process is one of the primary energy absorbing mechanisms in a grounding or collision event between a press cutter and a material on a die. The cutting mechanism is complicated and involves plastic flows of a plate in the vicinity of the tip, friction between the wedge and the plate, deformation of the plate. In this paper, we studied the effect of friction between cutter and plastic sheet far producing precise and superior products. In this paper, the press cutter is analyzed numerically using MARC finite element program for a optimization design of a press cutter. The FEM computed results show that the maximum von Mises stress is concentrated on the tip of a press cutter, which may lead to the edge wear or impact wear of the sharp cutter. Based on the FEM result and Taguchi's experimental design method, the optimized design model 9 for a press cutter is recommended as a best one.
Keywords
press cutter; Taguchi's experimental method; polymer sheet; FEM;
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