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Development and validation of an automatic manufacturing process for fiberglass composites.pdf (1009.Kb)
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Development and validation of an automatic manufacturing process for fiberglass composites
Desarrollo y validación de un proceso automático de fabricación de composites de fibra de vidrio
Egilea
Esnaola, Aritz
Egilea (beste erakunde batekoa)
Goenaga Goicoechea, Garazi
Gutierrez Perez de Eulate, Natalia
Urrutxua Andia, Maitane
Vallejo Rasero, Francisco Javier
Ikerketa taldea
Tecnología de plásticos y compuestos
Beste instituzio
Ideko (Spain)
Bertsioa
Bertsio argitaratua
Eskubideak
© 2023 The Authors
Sarbidea
Sarbide irekia
URI
https://hdl.handle.net/20.500.11984/6280
Argitaratzailearen bertsioa
https://doi.org/10.6036/10739
Non argitaratua
DYNA 
Argitaratzailea
Dyna Publishing
Gako-hitzak
desarrollo de procesos
proceso automático
fibra de vidrio
prepregs ... [+]
desarrollo de procesos
proceso automático
fibra de vidrio
prepregs
curado UV
porosidad
módulo de flexión
resistencia a flexión
resistencia a cizalla interlaminar
power factor correction (PFC)
contenido en fibra
control de proceso
control de propiedades
process development
automatic process
fiberglass
prepregs
Ultraviolet curing
Porosity
flexural modulus
flexural strength
interlaminar strength
composite fibre content
process control
property control [-]
Eremua (UNESCO Sailkapena)
Zientzia Teknologikoak
Diziplina (UNESCO Sailkapena)
Materialen teknologia
Laburpena
Fiberglass reinforced polymeric composites are ideal for various applications due to their mechanical properties and lightweight. However, nowadays many fiberglass reinforced composite manufacturing p ... [+]
Fiberglass reinforced polymeric composites are ideal for various applications due to their mechanical properties and lightweight. However, nowadays many fiberglass reinforced composite manufacturing processes are manual, which makes it complicated for them to meet industrial requirements regarding the quality and reliability of the manufactured parts, limiting their applications. The development of automatic and digital processes lead to the reduction of manual labour and, as a consequence, the cost and variability of the process. Nevertheless, the industrial implementation of these automatic processes requires them to be economically affordable, flexible and simple. Therefore, the research work carried out has focused on the development of an automatic fiberglass composite manufacturing process able to produce composites with mechanical properties comparable to those obtained in conventional manufacturing processes. For this purpose, a two-stage manufacturing line has been developed: (i) the automatic manufacture of fiberglass and ultraviolet (UV) resin prepregs, and (ii) the compaction and curing of these prepregs. The process has been validated by measuring the physical and mechanical properties of the manufactured composites and comparing them to those obtained with hand lay-up and infusion processes. [-]
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