In addressing the difficulty of forming Fiber Metal Laminates (FMLs), a laminate composed of a 0.1 mm-thick 304 Stainless Steel Foil (SSF) and Carbon Fiber Reinforced Plastics (CFRP) as the base material is prepared using a specific process. Subsequently, forming limit diagrams are obtained through hemispherical bulge forming experiments to investigate the forming performance of FMLs laminates. The damage phenomena of various forming specimens during the thermal stamping process are analyzed. Based on different damage forms, corresponding theoretical models are established to simulate and predict the forming damage modes of FMLs through simulation. The research results indicate that the stamping formability of FMLs is influenced by the dama...
Damage initiation is modeled in singly oriented ply (SOP) Fiber Metal Laminate (FML) under concentra...
Fiber metal laminate (FML) is a kind of lightweight material with excellent mechanical properties co...
This paper proposes a theoretical approach to predict the failure behavior of laminated carbon fiber...
Fibre Metal Laminates (FML) systems are a hybrid material consisting of alternating layers of metal ...
Fiber metal laminates are sandwich materials comprised of altering layers of fiber reinforced compos...
This paper investigated stamp forming performance of two aluminum-based Fiber-metal lami-nates (FMLs...
The glass fiber-reinforced metal laminates (GLARE) cannot be used to form complex laminate structure...
In light of recent climate changes, tight regulations have been imposed on automotive manufacturers ...
In developing a methodology for a robust stamp-forming process for glass-fibre reinforced thermoplas...
Many constitutive models incorporated with finite element method, have been developed to predict the...
Fused deposition modelling (FDM) is an additive manufacturing process used for the 3D printing of co...
Fiber-metal laminates (FMLs) possess huge potential in mass-reduction strategy of automotive industr...
This research presents results on the stamp forming behavior of Fiber Metal Laminate Systems. A Desi...
This research presents results on the stamp forming behavior of Fiber Metal Laminate Systems. A Desi...
We built a three-dimensional finite element (FE) model to investigate the impact response of fiber-m...
Damage initiation is modeled in singly oriented ply (SOP) Fiber Metal Laminate (FML) under concentra...
Fiber metal laminate (FML) is a kind of lightweight material with excellent mechanical properties co...
This paper proposes a theoretical approach to predict the failure behavior of laminated carbon fiber...
Fibre Metal Laminates (FML) systems are a hybrid material consisting of alternating layers of metal ...
Fiber metal laminates are sandwich materials comprised of altering layers of fiber reinforced compos...
This paper investigated stamp forming performance of two aluminum-based Fiber-metal lami-nates (FMLs...
The glass fiber-reinforced metal laminates (GLARE) cannot be used to form complex laminate structure...
In light of recent climate changes, tight regulations have been imposed on automotive manufacturers ...
In developing a methodology for a robust stamp-forming process for glass-fibre reinforced thermoplas...
Many constitutive models incorporated with finite element method, have been developed to predict the...
Fused deposition modelling (FDM) is an additive manufacturing process used for the 3D printing of co...
Fiber-metal laminates (FMLs) possess huge potential in mass-reduction strategy of automotive industr...
This research presents results on the stamp forming behavior of Fiber Metal Laminate Systems. A Desi...
This research presents results on the stamp forming behavior of Fiber Metal Laminate Systems. A Desi...
We built a three-dimensional finite element (FE) model to investigate the impact response of fiber-m...
Damage initiation is modeled in singly oriented ply (SOP) Fiber Metal Laminate (FML) under concentra...
Fiber metal laminate (FML) is a kind of lightweight material with excellent mechanical properties co...
This paper proposes a theoretical approach to predict the failure behavior of laminated carbon fiber...