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Manufacturing of polymer matrix composites using vacuum assisted resin infusion molding

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Języki publikacji
EN
Abstrakty
EN
Purpose: The purpose of the paper is to manufacture the polymer matrix composites using vacuum assisted resin infusion molding. Design/methodology/approach: Electrical heating resistances are used for heating of table. The temperature control is achieved by means of acquiring temperatures using thermocouples located beneath the table surface. VARIM table is divided into eight regions. Each region has an independent closed loop temperature control system. Findings: By using a PLC and a touch screen, the system is capable of adjusting the desired temperatures, up to 200°C, and corresponding time intervals for curing cycles. The main advantage of using a PLC as a control unit for this system is to have a flexible control for changing the cure conditions. Research limitations/implications: The setup is capable of controlling the level of vacuum and the temperature of the heating table, single sided tool. By using the VARIM system, high quality and void-free composite plates are fabricated. Originality/value: The paper is supposed to give significant tips to researchers who intend to setup and utilize VARIM technology in their works.
Słowa kluczowe
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Strony
117--120
Opis fizyczny
bibliogr. 7 poz.
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autor
autor
Bibliografia
  • [1] J.W. Boh, L.A. Louca, Y.S. Choo, S.E. Mouring, Damage modeling of SCRIMP woven roving laminated beams subjected to transverse shear, Composites B 36 (2005) 427-438.
  • [2] N.C. Correia, F. Robitaille, A.C. Long, C.D. Rudd, P. Simacek, S.G. Advani, Use of Resin Transfer Moulding Simulation to Predict Flow, Saturation and Compaction in the VARTM Process, Journal of Fluids Engineering ASME 126 (2004) 210-215.
  • [3] M.K. Kang, W.I. Lee, H.T. Hahn, Analysis of Vacuum Bag Resin Transfer Molding process, Composites A 32 (2001) 1553-1560.
  • [4] A. Khattab, Exploratory Development of VARIM Process for Manufacturing High Temperature Polymer Matrix Composites, Ph.D thesis, University of Missouri, 2005.
  • [5] M.S. Koefoed, Modeling and Simulation of the VARTM Process for Wind Turbine Blades, Industrial Ph.D. Dissertation, Aalborg University, 2003.
  • [6] A. Ragondet, Experimental Characterization of the Vacuum Infusion Process, PhD thesis, University of Nottingham, 2005.
  • [7] D. Tzetzis, P.J. Hogg, Experimental and Finite Element Analysis on the Performance of Vacuum-assisted Resin Infused Single Scarf Repairs, Materials and Design 29 (2008) 436-449.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSL7-0033-0044
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