会议专题

NUMERICAL SIMULATION OF BULK METAL FORMING BY MESHLESS METHOD

Conventional finite element (FE) analysis of bulk metal forming processes often breaks down due to severe mesh distortion. In recent years, meshless methods have been considerably developed for structural applications. The main feature of these methods is that the problem domain is represented by a set of nodes, and a finite element mesh is unnecessary. This new generation of computational methods can avoid time-consuming meshing and remeshing. A meshless method based on reproducing kernel particle method (RKPM) is applied to bulk metal forming analysis. The displacement shape functions are developed from a reproducing kernel (RK) approximation that satisfies consistency conditions. The shape function is modified to impose essential boundary conditions accurately and expediently. A material kernel function that deforms with the material is introduced to assure the stability of the RKPM shape function during large deformations. A program based on RKPM is developed to simulate two examples of bulk metal forming process such as ring compression and cold upsetting, and numerical results demonstrate the performance of the meshless method in bulk metal forming analysis.

Meshless method reproducing kernel particle method finite element method bulk metal forming large deformation

HONGSHENG LIU ZHONGWEN XING

School of Mechatronics Engineering, Harbin Institute of Technology, 92# Xida Zhi Street, Harbin, Hei School of Mechatronics Engineering, Harbin Institute of Technology, 92# Xida Zhi Street, Harbin, Hei

国际会议

第五届先进材料与加工国际会议(Fifth International Conference on Advanced Materials and Processing ICAMP-5)

哈尔滨

英文

1615-1620

2008-09-03(万方平台首次上网日期,不代表论文的发表时间)