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- W2024198497 abstract "Basic property of fabricated structures is stiffness and flexural modulus. Now a day's composite structures are replacing the solid structures due to their improved properties. Use of composites is more challenging, since the materials are less predictable. Composites are brittle not ductile failure. Structural health monitoring and non-destructive inspection of composites is much more difficult than for metals as the damage in composites are complex (Fiber cracks, matrix cracks, interface deboning, delamination, micro buckling etc.). To overcome the major drawback of composites, spot welded panels are used. Based on the analysis, panel structure parameters considered are Thickness of the sheet, Core height, Core shape, Panel size, Weld layout and Material constituents of panel face sheet, bottom sheet and core. The parameters are analyzed by Taguchi design of experiments by considering orthogonal array of L16. The main aim is to optimize the panel dimensions on flexural modulus of a fabricated metallic panel, using Finite Element Analysis. The problem is modelled in ANSYS and the flexural modulus is evaluated in the transverse direction by three point bending test (ASTM D790). The optimum dimensions of the panel for three point bending is tested and evaluated by Taguchi Analysis. The results show that the proposed approach can find optimal dimensions considering both better and more robust design." @default.
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- W2024198497 date "2014-01-01" @default.
- W2024198497 modified "2023-09-26" @default.
- W2024198497 title "Design and Fabrication of Spot Welded Corrugated Panel Under Three Point Bending by FEM" @default.
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- W2024198497 doi "https://doi.org/10.1016/j.proeng.2014.12.408" @default.
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