Loading...
Applying elastic unfolding technique in nonlinear inverse finite element method for sheet forming modeling
Farahani, M. K ; Sharif University of Technology | 2012
940
Viewed
- Type of Document: Article
- DOI: 10.4028/www.scientific.net/AMR.341-342.242
- Publisher: 2012
- Abstract:
- A simplified efficient finite element method called the inverse approach (IA) has been developed to estimate initial blank and strain distribution in sheet metal forming. This algorithm is an inverse method since the position of points in final shape is known and their corresponding position in the initial blank should be determined. This approach deals with the geometric compatibility of finite elements, plastic deformation theory, and virtual work principle. This method often based on implicit static algorithms, sometimes causes convergence problems because of strong nonlinearities. This paper introduces an initial guess to speed up the convergence of Newton- Raphson solution. The application to a sheet forming example shows good agreement between forward incremental and IFEM results
- Keywords:
- Initial blank design ; Blank design ; Convergence problems ; Finite Element ; Initial guess ; Inverse approach ; Inverse finite element methods ; Inverse methods ; Principle of virtual work ; Sheet forming ; Speed-ups ; Static algorithms ; Strain distributions ; Strong nonlinearity ; Unfolding techniques ; Virtual work principle ; Algorithms ; Convergence of numerical methods ; Inverse problems ; Manufacture ; Metal forming ; Sheet metal ; Finite element method
- Source: Advanced Materials Research, 8 July 2011 through 11 July 2011 ; Volume 341-342 , July , 2012 , Pages 242-246 ; 10226680 (ISSN) ; 9783037852521 (ISBN)
- URL: http://www.scientific.net/AMR.341-342.242
