Glass laminate aluminium reinforced epoxy (GLARE) is an advanced aircraft material because of its excellent fatigue crack resistance, high impact strength, high strength-to-weight ratio and high stiffness-to-weight ratio. While drilling on composite/metal stacks has been investigated, the drilling of GLARE, which consists of several alternate thin layers of aluminium and composites, has not been addressed separately in the open literature. The focus of present experimental work is to understand the cutting mechanism and relative effect of cutting parameters and tool geometry on the delamination and burr formation during drilling of GLARE. Thrust force, torque and acoustic emission (AE) signals were acquired for analyzing the cutting mechani...
The characteristics of carbon fiber-reinforced plastics allow a very broad range of uses. Drilling i...
The use of material stacks comprising titanium, carbon fibre reinforced plastics (CFRPs) and alumini...
In recent years, the use of hybrid composite stacks, particularly CFRP/Al assemblies, and fiber meta...
Glass laminate aluminium reinforced epoxy (GLARE) is an advanced aircraft material because of its ex...
Drilling operations in glass laminate aluminium reinforced epoxy (GLARE) hybrid laminates require di...
While there has been a significant amount of research on drilling composite-metal stacks, limited wo...
Machining Glass fibre aluminium reinforced epoxy (GLARE) is cumbersome due to distinctively differen...
Fibre metal laminates (FMLs) are multilayered metal composite materials currently used in aeronautic...
GLARE laminates are multi-layered metal-composite materials created from bonding sheets of metallic ...
This study aims to evaluate the effectiveness of Ultrasonic-assisted drilling (UAD) of Glass laminat...
Composite materials are widely employed in the naval, aerospace and transportation industries owing ...
Glass fiber reinforced plastic (GFRP) composite materials are widely used industrial, aerospace, and...
The drilling of composite material laminates is a widely used process and is critical from a structu...
Fibre metal laminates (FMLs) are multilayered metal composite materials currently used in aeronautic...
Hole drilling operations are common in fibre reinforced plastics - FRP’s - to facilitate fastener as...
The characteristics of carbon fiber-reinforced plastics allow a very broad range of uses. Drilling i...
The use of material stacks comprising titanium, carbon fibre reinforced plastics (CFRPs) and alumini...
In recent years, the use of hybrid composite stacks, particularly CFRP/Al assemblies, and fiber meta...
Glass laminate aluminium reinforced epoxy (GLARE) is an advanced aircraft material because of its ex...
Drilling operations in glass laminate aluminium reinforced epoxy (GLARE) hybrid laminates require di...
While there has been a significant amount of research on drilling composite-metal stacks, limited wo...
Machining Glass fibre aluminium reinforced epoxy (GLARE) is cumbersome due to distinctively differen...
Fibre metal laminates (FMLs) are multilayered metal composite materials currently used in aeronautic...
GLARE laminates are multi-layered metal-composite materials created from bonding sheets of metallic ...
This study aims to evaluate the effectiveness of Ultrasonic-assisted drilling (UAD) of Glass laminat...
Composite materials are widely employed in the naval, aerospace and transportation industries owing ...
Glass fiber reinforced plastic (GFRP) composite materials are widely used industrial, aerospace, and...
The drilling of composite material laminates is a widely used process and is critical from a structu...
Fibre metal laminates (FMLs) are multilayered metal composite materials currently used in aeronautic...
Hole drilling operations are common in fibre reinforced plastics - FRP’s - to facilitate fastener as...
The characteristics of carbon fiber-reinforced plastics allow a very broad range of uses. Drilling i...
The use of material stacks comprising titanium, carbon fibre reinforced plastics (CFRPs) and alumini...
In recent years, the use of hybrid composite stacks, particularly CFRP/Al assemblies, and fiber meta...