2005•Journal of Nanjing Institute of Industry TechnologyRequires access

Application of Orthogonal Testing for Numerical Simulation of Front Wing Sheet Metal Forming

Hongjun Wang

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Abstract

According to the principle of orthogonal test and using Pamstamp 2G (one of the sheet metal forming CAE systems), front wing with different blank holder force, friction coefficients between tools and blank sheet, gap between die and punch, and initial size of blank sheet are numerically simulated. The simulated thickness is compared with practical thickness. The effects of above factors are obtained. The optimal theoretical forming conditions are predicted.

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What this paper is about

According to the principle of orthogonal test and using Pamstamp 2G (one of the sheet metal forming CAE systems), front wing with different blank holder force, friction coefficients between tools and blank sheet, gap between die and punch, and initial size of blank sheet are numerically simulated. The simulated thickness is compared with practical thickness. The effects of above factors are obtained. The optimal theoretical forming conditions are predicted.

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Available abstract

According to the principle of orthogonal test and using Pamstamp 2G (one of the sheet metal forming CAE systems), front wing with different blank holder force, friction coefficients between tools and blank sheet, gap between die and punch, and initial size of blank sheet are numerically simulated. The simulated thickness is compared with practical thickness. The effects of above factors are obtained. The optimal theoretical forming conditions are predicted.

Key concepts: Blank, Sheet metal, Wing, Front (military), Materials science, Computer simulation, Die (integrated circuit), Structural engineering

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