Please use this identifier to cite or link to this item: https://hdl.handle.net/11499/8622
Title: Numerical elastic plastic stress analysis in a woven steel reinforced composite thermoplastic cantilever beam
Authors: Benli, S.
Sayman, O.
Sayer, Metin
Karamolla, M.
Keywords: Elastic-plastic stress analysis
Residual stress
Thermoplastic composite beam
ANSYS software
Elastic-Plastic
Finite element models
Orientation angles
Stress component
Thermoplastic composite
Thermoplastic composite beams
Woven fibers
Woven steel
Cantilever beams
Composite beams and girders
Composite materials
Elastoplasticity
Residual stresses
Thermoplastics
Stress analysis
Cantilevered Design
Computer Programs
Stress Analysis
Woven Fabric
Abstract: In this study, an elastic-plastic stress analysis has been carried out in a thermoplastic composite cantilever beam. The thermoplastic composite beam was reinforced by steel woven fibers. The beam was loaded uniformly. The orientation angles were chosen as 0°, 15°, 30° and 45°. The finite element models of the beams were developed by using ANSYS software. The obtained results from the nonlinear analyses show that the residual stress component of ? x is the highest at the fixed end at the upper and lower edges for the 0° orientation. However, it is the highest on or around the elastic plastic boundaries for the 15°, 30° and 45° orientations. The magnitude of the residual stress component of ? xy is found to be the highest at or around the axis of the beam at the fixed end. 30° orientation produces the highest stress component of ? xy around the axis of the beam. Also, it is found that the magnitude of the residual stress component of ? x is higher that that of the ? xy.
URI: https://hdl.handle.net/11499/8622
ISSN: 1300-686X
Appears in Collections:Mühendislik Fakültesi Koleksiyonu
Scopus İndeksli Yayınlar Koleksiyonu / Scopus Indexed Publications Collection
TR Dizin İndeksli Yayınlar Koleksiyonu / TR Dizin Indexed Publications Collection

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