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KAYLA KRUPER 11/30/2015 FINITE ELEMENT STUDY TO COMPARE THE PERFORMANCE OF COMPOSITE AND STEEL ANGLE BARS.

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Presentation on theme: "KAYLA KRUPER 11/30/2015 FINITE ELEMENT STUDY TO COMPARE THE PERFORMANCE OF COMPOSITE AND STEEL ANGLE BARS."— Presentation transcript:

1 KAYLA KRUPER 11/30/2015 FINITE ELEMENT STUDY TO COMPARE THE PERFORMANCE OF COMPOSITE AND STEEL ANGLE BARS

2 PROBLEM DESCRIPTION Model an angle bar in Abaqus/CAE Modify models with different physical properties such as material, mass and size Compare the analytical results of the performance of the angle bar

3 ANGLE BAR GEOMETRIES Thickness (t) is 0.25”

4 ANGLE BAR PROPERTIES Material Properties of Fiberglass Material E 1 (x 10 6 psi) E 2 (x 10 6 psi) v 12 G 12 (x 10 6 psi) G 13 (x 10 6 psi) G 23 (x 10 6 psi) Glass-reinforced plastic (fiberglass) 8.342.7270.251.08 1.05 Material Properties of Steel Material Young’s Modulus E (x 10 6 psi) Density (lb/in 3 )Poisson’s Ratio Steel 290.2840.28

5 LOADS A pressure load of 9 psi is applied to the top surface

6 BOUNDARY CONDITIONS All degrees of freedom (DOFs) are constrained on the back side of the angle bar to prevent movement and rotation in all directions

7 MESH Element used is the S4R 4-noded doubly curved shell element

8 MILESTONE/DEADLINE LIST Milestones Research experimental data on composite and steel performances Research material properties for composite and steel angle bars Create FEM of an angle bar Run FEM to determine effect of different variables Deadlines Tentative Project Proposal DraftSeptember 18, 2015 Project ProposalSeptember 23, 2015 First Progress ReportOctober 19, 2015 Second Progress ReportNovember 16, 2015 Preliminary Final ReportNovember 30, 2015 Final Report December 7, 2015


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