Open Journal of Inorganic Non-metallic Materials

Open Journal of Inorganic Non-metallic Materials

ISSN Print: 2164-6791
ISSN Online: 2164-6805
www.scirp.org/journal/ojinm
E-mail: ojinm@scirp.org
"Experimental Characterization by Fluorescence of Capillary Flows in the Fiber Tows of Engineering Fabrics"
written by François LeBel, Amir Ershad Fanaei, Édu Ruiz, François Trochu,
published by Open Journal of Inorganic Non-metallic Materials, Vol.2 No.3, 2012
has been cited by the following article(s):
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[7] Assessment of Capillary Phenomena in Liquid Composite Molding
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[8] Performance of geotextiles with enhanced drainage
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[9] Capillary Characterization of Fibrous Reinforcement and Optimization of Injection Strategy in Resin Transfer Molding
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[11] Multiscale modeling to describe free surface resin flow around fibers and within fiber bundles
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[12] Experimental study of saturation by visible light transmission in dual-scale fibrous reinforcements during composite manufacturing
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[14] Modeling and simulation of filling in dual-scale fibrous reinforcements: state of the art and new methodology to quantify the sink effect
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[15] Étude et prédiction numérique des modes d'écoulement à travers un renfort fibreux à double échelle de porosité
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[16] A two-phase flow model to simulate mold filling and saturation in Resin Transfer Molding
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[17] Développement et caractérisation de nouveaux composites hybrides UD LIN/papier et UD LIN/MAT LIN
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[18] Characterization of preform permeability and flow behavior for liquid composite molding
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[19] Dual scale flow during vacuum infusion of composites: experiments and modelling
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[20] Manufacturing and characterization of bipolar fuel cell plate with textile reinforced polymer composites
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[21] Numerical prediction of saturation in dual scale fibrous reinforcements during Liquid Composite Molding
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[22] An in situ investigation of microscopic infusion and void transport during vacuum-assisted infiltration by means of X-ray computed tomography
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[23] Void Modeling in Resin Infusion
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[24] Determination of the optimal impregnation velocity in Resin Transfer Molding by capillary rise experiments and infrared thermogr
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[25] Prediction of optimal flow front velocity to minimize void formation in dual scale fibrous reinforcements
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[26] Void Minimization And Optimisation Of Injection Velocity In RTM Processing
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[27] Experimental characterization by fluorescence of capillary flows in dual-scale engineering fabrics
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[28] DETERMINATION OF THE OPTIMAL INJECTION VELOCITY IN RESIN TRANSFER MOLDING BY INFRARED THERMOGRAPHY
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[29] VOID MINIMIZATION AND OPTIMIZATION OF INJECTION VELOCITY IN RTM PROCESSING
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[30] A MICROMECHANICAL MODEL TO SIMULATE CAPILLARY FLOWS IN DUAL SCALE POROUS MEDIA
C Thurnherr, C Ravey, F Trochu - tech.plym.ac.uk, 2012
[31] MODELING HYSTERESIS IN LIQUID COMPOSITE MOLD FILLING PROCESSES WITH VOID FORMATION
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