Please use this identifier to cite or link to this item: https://doi.org/10.3390/polym11122003
Title: Modeling and Experimental Validation of the VARTM Process for Thin-Walled Preforms
Authors: Wu, Da
Larsson, Ragnar
MOHAMMAD SADEGH ROUHI 
Keywords: Science & Technology
Physical Sciences
Polymer Science
liquid composite molding
porous media theory
process modeling
fiber preform deformation
resin flow
COMPOSITE MOLDING PROCESSES
FIBER TOW SATURATION
CLOSED-FORM SOLUTION
RESIN FLOW
UNSATURATED FLOW
POROUS-MEDIA
CAPILLARY-PRESSURE
THICKNESS GRADIENT
SIMULATION
INFUSION
Issue Date: 1-Dec-2019
Publisher: MDPI
Citation: Wu, Da, Larsson, Ragnar, MOHAMMAD SADEGH ROUHI (2019-12-01). Modeling and Experimental Validation of the VARTM Process for Thin-Walled Preforms. POLYMERS 11 (12). ScholarBank@NUS Repository. https://doi.org/10.3390/polym11122003
Abstract: In this paper, recent shell model is advanced towards the calibration and validation of the Vacuum-assisted Resin Transfer Molding (VARTM) process in a novel way. The model solves the nonlinear and strongly coupled resin flow and preform deformation when the 3-D flow and stress problem is simplified to a corresponding 2-D problem. In this way, the computational efficiency is enhanced dramatically, which allows for simulations of the VARTM process of large scale thin-walled structures. The main novelty is that the assumptions of the neglected through-thickness flow and the restricted preform deformation along the normal of preform surface suffice well for the thin-walled VARTM process. The model shows excellent agreement with the VARTM process experiment. With good accuracy and high computational efficiency, the shell model provides an insight into the simulation-based optimization of the VARTM process. It can be applied to either determine locations of the gate and vents or optimize process parameters to reduce the deformation.
Source Title: POLYMERS
URI: https://scholarbank.nus.edu.sg/handle/10635/206916
ISSN: 2073-4360
DOI: 10.3390/polym11122003
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