Single point incremental forming (SPIF) has been demonstrated to accomplish current trends and requirements in industry. Recent studies have applied this technology to hole-flanging by performing different forming strategies using one or multiple stages. In this work, an optimization procedure is proposed to balance fabrication time and thickness distribution along the produced flange in a two-stage variant. A detailed analytical, numerical and experimental investigation is carried out to provide, evaluate and corroborate the optimal strategy. The methodology begins by analysing the single-stage process to understand the deformation and failure mechanisms. Accordingly, a parametric two-stage SPIF strategy is proposed and evaluated by an exp...
This paper analyses the flangeability of AA2024-T3 sheets using single point incremental forming (SP...
Single point incremental forming (SPIF) is a flexible technology that can form a wide range of sheet...
This research investigates a novel hole-flanging process by paddle forming through the use of finite...
Single point incremental forming (SPIF) has been demonstrated to accomplish current trends and requi...
Special Issue of the Manufacturing Engineering Society (MES)Single point incremental forming (SPIF) ...
The use of Single-Point Incremental Forming (SPIF) technology in hole flanging operations using mult...
AbstractRecent studies show the capability of single-point incremental forming to perform successful...
Recent studies show the capability of single-point incremental forming to perform successfully hole-...
Incremental sheet forming is a novel technology that has significant benefits compared to convention...
In this paper, multi-axis single stage incremental hole-flanging is explored in place of three axis ...
AbstractHole flanges are important functional elements in many sheet metal parts. They provide stiff...
A drawback of the hole-flanging process by single-stage SPIF is the non-uniform thickness obtained a...
Recently, hole-flanging by single-stage incremental forming (SPIF) has been proposed as a suitable p...
One of the major challenges in conventional incremental sheet forming (ISF) is the extreme sheet thi...
Single-point incremental forming (SPIF) is a flexible technology that can form a wide range of sheet...
This paper analyses the flangeability of AA2024-T3 sheets using single point incremental forming (SP...
Single point incremental forming (SPIF) is a flexible technology that can form a wide range of sheet...
This research investigates a novel hole-flanging process by paddle forming through the use of finite...
Single point incremental forming (SPIF) has been demonstrated to accomplish current trends and requi...
Special Issue of the Manufacturing Engineering Society (MES)Single point incremental forming (SPIF) ...
The use of Single-Point Incremental Forming (SPIF) technology in hole flanging operations using mult...
AbstractRecent studies show the capability of single-point incremental forming to perform successful...
Recent studies show the capability of single-point incremental forming to perform successfully hole-...
Incremental sheet forming is a novel technology that has significant benefits compared to convention...
In this paper, multi-axis single stage incremental hole-flanging is explored in place of three axis ...
AbstractHole flanges are important functional elements in many sheet metal parts. They provide stiff...
A drawback of the hole-flanging process by single-stage SPIF is the non-uniform thickness obtained a...
Recently, hole-flanging by single-stage incremental forming (SPIF) has been proposed as a suitable p...
One of the major challenges in conventional incremental sheet forming (ISF) is the extreme sheet thi...
Single-point incremental forming (SPIF) is a flexible technology that can form a wide range of sheet...
This paper analyses the flangeability of AA2024-T3 sheets using single point incremental forming (SP...
Single point incremental forming (SPIF) is a flexible technology that can form a wide range of sheet...
This research investigates a novel hole-flanging process by paddle forming through the use of finite...