The current work presents a finite element approach for numerical simulation of the incremental sheet metal forming (ISF) process, called here ''ISF-SAM'' (for ISF-Simplified Analysis Modelling). The main goal of the study is to develop a simplified FE model sufficiently accurate to simulate the ISF process and quite efficient in terms of CPU time. Some assumptions have been adopted regarding the constitutive strains/stresses equations and the tool/sheet contact conditions. A simplified contact procedure was proposed to predict nodes in contact with the tool and to estimate their imposed displacements. A Discrete Kirchhoff Triangle shell element called DKT12, taking into account membrane and bending effects, has been used to mesh the sheet....
The aim of this chapter is to evaluate and predict forming limit and then to improve and develop the...
Incremental sheet forming (ISF) is a novel metal shaping technology that is economically viable for ...
Incremental sheet forming (ISF) is a highly versatile and flexible process for producing low batches...
The current work presents a finite element approach for numerical simulation of the incremental shee...
This paper presents a numerical simulation of the incremental sheet metal forming (ISF) pr...
This paper presents a numerical simulation of the incremental sheet metal forming (ISF) pr...
This paper presents a numerical simulation of the incremental sheet metal forming (ISF) pr...
Incremental sheet forming (ISF) is a very promising technology to manufacture sheet metal products b...
Incremental sheet forming (ISF) is a highly versatile and flexible process for producing low batches...
Incremental sheet forming (ISF) is a highly versatile and flexible process for producing low batches...
Incremental Sheet Forming (ISF) is a progressive metal forming process, where the deformation occurs...
Incremental sheet forming (ISF) is a promising manufacturing technology in which complex 3D shapes c...
International audienceThe paper is related to the analysis of shape distortions and springback effec...
International audienceThe paper is related to the analysis of shape distortions and springback effec...
Single point incremental forming has shown immense potential in the manufacture of prototypes. The s...
The aim of this chapter is to evaluate and predict forming limit and then to improve and develop the...
Incremental sheet forming (ISF) is a novel metal shaping technology that is economically viable for ...
Incremental sheet forming (ISF) is a highly versatile and flexible process for producing low batches...
The current work presents a finite element approach for numerical simulation of the incremental shee...
This paper presents a numerical simulation of the incremental sheet metal forming (ISF) pr...
This paper presents a numerical simulation of the incremental sheet metal forming (ISF) pr...
This paper presents a numerical simulation of the incremental sheet metal forming (ISF) pr...
Incremental sheet forming (ISF) is a very promising technology to manufacture sheet metal products b...
Incremental sheet forming (ISF) is a highly versatile and flexible process for producing low batches...
Incremental sheet forming (ISF) is a highly versatile and flexible process for producing low batches...
Incremental Sheet Forming (ISF) is a progressive metal forming process, where the deformation occurs...
Incremental sheet forming (ISF) is a promising manufacturing technology in which complex 3D shapes c...
International audienceThe paper is related to the analysis of shape distortions and springback effec...
International audienceThe paper is related to the analysis of shape distortions and springback effec...
Single point incremental forming has shown immense potential in the manufacture of prototypes. The s...
The aim of this chapter is to evaluate and predict forming limit and then to improve and develop the...
Incremental sheet forming (ISF) is a novel metal shaping technology that is economically viable for ...
Incremental sheet forming (ISF) is a highly versatile and flexible process for producing low batches...