Utilize este identificador para referenciar este registo: https://hdl.handle.net/1822/21889

TítuloImproving the dynamical behaviour of a laser cutting equipment by using a carbon fibre composite main structural runway frame
Autor(es)Vieira, D. G.
Meireles, José F.
Nunes, J. P.
Palavras-chaveFEM
Carbon fibre
Composite
Laser cutting equipment
Data2013
EditoraTrans Tech Publications
RevistaMaterials Science Forum
Resumo(s)In order to improve the dynamic behaviour of an industrial laser cutting equipment a sandwich solution, using a carbon fibre reinforced polymer (CFRP) and polyester foam core, was implemented to construct its main runway structural frame, which supports the cutting head and major laser beam mirrors and lens. Nowadays, the commercial competiveness of laser cutting equipments is considerable enhanced by their higher cutting speed and precision, as well as, cost. With the recent available higher power laser beam generators and swifter motors quicker and powerful cuts may be already done. However, at accelerations of 3 and 4 g’s already enabled by linear motors, the lack of stiffness and high mass and consequent inertia of the traditional runway structural frames, made from steel and/or aluminium, do not allow achieving high required cutting precisions. Thus, the present study considered replacing those conventional materials by much lighter advanced CRFP composites to improve the dynamic performance of an existing laser cutting equipment. Advanced numeric Finite Element Method (FEM) calculations by using the ANSYS package software were made to verify the static and dynamic behaviours of the new composite structural frame and compare them to simulations made with the currently used steel solution.The composite structural frame processing method has been also studied and defined in this work. Furthermore, the composite laminate has been optimised by defining the better number of stacking layers and fibre orientations to be used, as well as, the foam core thickness. The failure of the new sandwich structural composite runway frame has been verified through the Tsai-Wu criterion. Finally, an economic analysis of the viability of the new composite solution adopted will be also presented.
TipoArtigo em ata de conferência
URIhttps://hdl.handle.net/1822/21889
DOI10.4028/www.scientific.net/MSF.730-732.349
ISSN1013-9826
Arbitragem científicayes
AcessoAcesso aberto
Aparece nas coleções:DEM - Artigos em revistas de circulação internacional com arbitragem científica
IPC - Artigos em revistas científicas internacionais com arbitragem

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