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Injection Machine Structure Analysis and Movable-Plate Optimization Using ANSYS

XU Guang-ju

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Abstract

This paper takes injection molding machine as the research object,to conduct an overall modeling and analysis of clamping unit of injection molding machine under the Collaborative design analysis environment of PRO/E and ANSYS. The results show the deformation and stress of movable-plate change a lot under the 150KN clamping force. According to finite element analysis,using ANSYS Optimizing templates to optimize the design of movable-plate,the optimization design significantly reduces the stress and deformation. It plays a good role in guiding for the improvement of product performance.

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What this paper is about

This paper takes injection molding machine as the research object,to conduct an overall modeling and analysis of clamping unit of injection molding machine under the Collaborative design analysis environment of PRO/E and ANSYS. The results show the deformation and stress of movable-plate change a lot under the 150KN clamping force. According to finite element analysis,using ANSYS Optimizing templates to optimize the design of movable-plate,the optimization design significantly reduces the stress and deformation. It plays a good role in guiding for the improvement of product performance.

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Available abstract

This paper takes injection molding machine as the research object,to conduct an overall modeling and analysis of clamping unit of injection molding machine under the Collaborative design analysis environment of PRO/E and ANSYS. The results show the deformation and stress of movable-plate change a lot under the 150KN clamping force. According to finite element analysis,using ANSYS Optimizing templates to optimize the design of movable-plate,the optimization design significantly reduces the stress and deformation. It plays a good role in guiding for the improvement of product performance.

Key concepts: Clamping, Injection molding machine, Finite element method, Engineering, Deformation (meteorology), Molding (decorative), Structural engineering, Stress (linguistics)

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