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Development of Design Analysis Methods for C/SiC Composite StructuresThe stress-strain behavior at room temperature and at 1100 C (2000 F) was measured for two carbon-fiber-reinforced silicon carbide (C/SiC) composite materials: a two-dimensional plain-weave quasi-isotropic laminate and a three-dimensional angle-interlock woven composite. Micromechanics-based material models were developed for predicting the response properties of these two materials. The micromechanics based material models were calibrated by correlating the predicted material property values with the measured values. Four-point beam bending sub-element specimens were fabricated with these two fiber architectures and four-point bending tests were performed at room temperature and at 1100 C. Displacements and strains were measured at various locations along the beam and recorded as a function of load magnitude. The calibrated material models were used in concert with a nonlinear finite element solution to simulate the structural response of these two materials in the four-point beam bending tests. The structural response predicted by the nonlinear analysis method compares favorably with the measured response for both materials and for both test temperatures. Results show that the material models scale up fairly well from coupon to subcomponent level.
Document ID
20060011232
Acquisition Source
Glenn Research Center
Document Type
Technical Publication (TP)
Authors
Sullivan, Roy M.
(NASA Glenn Research Center Cleveland, OH, United States)
Mital, Subodh K.
(Toledo Univ. OH, United States)
Murthy, Pappu L. N.
(NASA Glenn Research Center Cleveland, OH, United States)
Palko, Joseph L.
(Connecticut Researve Technologies, LLC Strongsville, OH, United States)
Cueno, Jacques C.
(Southern Research Inst. Birmingham, AL, United States)
Koenig, John R.
(Southern Research Inst. Birmingham, AL, United States)
Date Acquired
August 23, 2013
Publication Date
March 1, 2006
Subject Category
Composite Materials
Report/Patent Number
E-15327
NASA/TP-2006-214005
Report Number: E-15327
Report Number: NASA/TP-2006-214005
Distribution Limits
Public
Copyright
Public Use Permitted.
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