Please use this identifier to cite or link to this item: http://10.1.7.192:80/jspui/handle/123456789/1529
Title: Stress Analysis of Infinite Composite Plate With Circular Hole, Subjected To Moment and Torsion At Infinity
Authors: Kohali, Mohit
Keywords: Mechanical 2008
Project Report 2008
Mechanical Project Report
Project Report
08MME
08MME009
CAD/CAM
CAD/CAM 2008
Issue Date: 1-Jun-2010
Publisher: Institute of Technology
Series/Report no.: 08MME009
Abstract: Composite laminated plates are being increasingly used in modern engineering appli- cations, due to their high strength-to-weight and sti ness-to-weight ratios. The high speci c strength and speci c sti ness which are the bases of the superior structural performance of composite materials provide the composite materials many applica- tion choices. Holes of di erent shapes are inevitable to meet certain operational requirements. These holes and openings act as stress raisers. Thus, it is essential to predict the stress elds around these holes. In the present work, stress functions for a in nite composite laminated plate with cir- cular hole subjected to in-plane and bending load have been obtained using Mushkel- ishivilli's complex variable approach. The generalized stress function so obtained has been coded using MATLAB 7.0. Furthermore,the e ect of various parameters such as Loading conditions, ber orien- tation angle, stacking sequence and material property on the stress functions have been studied. The results obtained are in close agreement with available literature. ANSYS 11.0 has been used as FEM tool to compare the results of present solution, the results are well matching with that of FEM solutions. Analytical method is superior as it facilitates the parametric study of the stress anal- ysis and takes very less time. Keywords: Bending of anisotropic plates; Complex potential method; Composite materials; Stress resultants and moments around holes; Symmetric laminates
URI: http://hdl.handle.net/123456789/1529
Appears in Collections:Dissertation, ME (CAD/CAM)

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