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The thermomechanical properties of carbon nanotubes and polymer matrix are assumed to be temperature-dependent.
Initially, the yarns and the matrix are assumed to be transversely isotropic and isotropic materials respectively.
Material properties of the fibers and polymeric matrix are assumed to be temperature dependent.
The perfect bonding between the carbon nanotubes and the matrix are assumed.
Thermoelastic constant of carbon nanotube (CNT) as well as polymer matrix are assumed to be temperature independent.
The material properties of the carbon nanotube and matrix are assumed to be graded through the thickness of panel via four types of grading rule.
Similar(45)
The matrix was assumed to be impervious.
The matrix was assumed to have the same optical properties as bulk fused silica.
The constitutive relation of the void-free matrix is assumed to obey the Norton power law.
Of particular interest is the fact that the prescribed stress field inside the matrix is assumed to be non-uniform.
The perfect and imperfect interfaces between inclusions and the matrix were assumed for the prediction.
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