DocumentCode :
636147
Title :
Numerical analysis of a ceramic matrix composites with strain induced damage using finite element method
Author :
Pandu, Ratnakar ; Ramakrishnudu, I. ; Babu, Vimal
Author_Institution :
Dept. of Mech. Eng., SR Int. Inst. of Technol., Hyderabad, India
fYear :
2013
fDate :
24-26 July 2013
Firstpage :
648
Lastpage :
654
Abstract :
A computationally efficient FE model has been developed to predict the mechanical behavior of ceramic matrix composites with strain-induced damage. The effects of different damage modes and their interactions on mechanical behavior have been considered. The non-linear longitudinal material properties are discretised to a multi-linear elastic curve. The constitutive equations for orthotropic materials are used to update the stresses for each increment of the analysis. The model is implemented by a Finite Element package, ANSYS with a user defined subroutine, UMAT. In all analyses, the expected mechanical behavior has been obtained. Strain induced damage modes and their interactions are modeled using the finite element method for Ceramic Matrix Composites (CMC) tows and 0°/90° laminates. For both situations, bi-axial straining is addressed, together with the degradation of Young´s modules and Poisson´s ratios. In all cases, the expected stress-strain behavior is calculated.
Keywords :
Poisson ratio; Young´s modulus; ceramics; composite materials; elasticity; finite element analysis; stress-strain relations; Poisson ratio; Young´s modulus; biaxial straining; ceramic matrix composites; computationally efficient finite element method; constitutive equations; finite element package ANSYS; mechanical behavior; multilinear elastic curve; nonlinear longitudinal material properties; numerical analysis; orthotropic materials; strain induced damage modes; stress-strain behavior; user defined subroutine UMAT; Analytical models; Computational modeling; Finite element analysis; Materials; Numerical models; Strain; Weaving; Ceramic Matrix Composites; Damage Mechanisms; Finite Element Method; Orthotropic Material; Tows;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced Nanomaterials and Emerging Engineering Technologies (ICANMEET), 2013 International Conference on
Conference_Location :
Chennai
Print_ISBN :
978-1-4799-1377-0
Type :
conf
DOI :
10.1109/ICANMEET.2013.6609375
Filename :
6609375
Link To Document :
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