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Merve Erdal Erdoğmuş

Department of Mechanical Engineering
Development of strain monitoring system for glass fiber reinforced composites via embedded electrically conductive pathways
Tanabi, Hamed; Erdal Erdoğmuş, Merve (Informa UK Limited, 2019-06-15)
Among numerous types of health-monitoring and damage-sensing sensors that can be integrated into composites, electrically conductive sensors offer a simple, cost-effective, and durable option for structural health monitori...
Effect of CNTs dispersion on electrical, mechanical and strain sensing properties of CNT/epoxy nanocomposites
Tanabi, Hamed; Erdal Erdoğmuş, Merve (Elsevier BV, 2019-03-01)
The remarkable electrical and mechanical properties of carbon nanotubes (CNTs) render CNT-reinforced nanocomposites as potentially attractive materials for strain-sensing and monitoring purposes. The dispersion state of CN...
Experimental and numerical study of process-induced total spring-in of corner-shaped composite parts
Cicek, K. Furkan; Erdal Erdoğmuş, Merve; Kayran, Altan (2017-07-01)
Process-induced total spring-in of corner-shaped composite parts manufactured via autoclave-forming technique using unidirectional prepreg is studied both numerically and experimentally. In the numerical study, a three-dim...
Accurate equivalent models of sandwich laminates with honeycomb core and composite face sheets via optimization involving modal behavior
Cinar, Okan; Erdal Erdoğmuş, Merve; Kayran, Altan (2017-03-01)
An approach is introduced for determining accurate two-dimensional equivalent laminated models of sandwich laminates with honeycomb core and composite facesheets by optimization involving modal behavior. The approach relie...
Production of graded porous polyamide structures and polyamide-epoxy composites via selective laser sintering
Jande, Yusufu A. C.; Erdal Erdoğmuş, Merve; Dağ, Serkan (SAGE Publications, 2014-06-01)
Selective laser sintering was used for producing uniformly porous and graded porous polyamide structures. The porous structures were infiltrated with epoxy to produce composites. The porous and composite specimens were phy...
Modeling of particle-resin suspension impregnation in compression resin transfer molding of particle-filled, continuous fiber reinforced composites
Sas, Hatice Sinem; Erdal Erdoğmuş, Merve (Springer Science and Business Media LLC, 2014-03-01)
A particle-resin suspension impregnation model is used for analyzing the mold filling process in compression resin transfer molding (CRTM) of particle-filled, continuous fiber composites. The model is based on Darcy flow c...
Experimental Investigation of Particle-Filler Distribution in Continuous Fiber-Reinforced Composites Produced via Liquid Molding
Aydil, T.; Tanabi, H.; Erdal Erdoğmuş, Merve (2013-09-11)
This paper presents the preliminary results of an experimental study undertaken to investigate the particle distribution in particle-filled, continuous fiber-reinforced composites produced via two liquid molding methods: R...
Proposal and evaluation of a KBE-RM selection system
Munguia, Javier; Bernard, Alain; Erdal Erdoğmuş, Merve (Emerald, 2011-01-01)
Purpose - The purpose of this paper is to propose and evaluate a novel tool for the assessment and selection of rapid prototyping (RP)/manufacturing (RM) systems as alternative processes for low-volume production in the ma...
Manufacturing of Functionally Graded Porous Products by Selective Laser Sintering
Erdal Erdoğmuş, Merve; Dağ, Serkan; Jande, Y.; Tekin, C. M. (2008-09-25)
Selective laser sintering (SLS) is a rapid prototyping technique which is used to manufacture plastic and metal models. The porosity of the final product obtained by SLS can be controlled by changing the energy density lev...
Impregnation molding of particle-filled preceramic polymers: Process modeling
Erdal Erdoğmuş, Merve; Guceri, SI; Danforth, SC (1999-08-01)
A process model is presented for the analysis and simulation of impregnation molding of particle-filled, continuous-fiber ceramic composites. A multidimensional, transient particle filtration formulation is coupled with is...