Creep Response of Carbon-Fiber-Reinforced Composite Using Homogenization Method. 2021

Mostafa Katouzian, and Sorin Vlase
Department Machine Tools, Technical University of Munich, 85748 Munich, Germany.

The homogenization theory, used for the study of differential equations with periodic coefficients, with a rapid variation, is used in the paper for the analysis of the creep phenomenon of composite materials, reinforced with fibers. Generally, a polymer composite having a matrix with a viscoelastic response manifests a creep behavior. A good knowledge of mechanical constants allows us to predict the time response under the action of a load, which is important in engineering. The homogenization method is used to determine the engineering constants for a composite reinforced with carbon fibers. The method is applied for the particular case of fiber-reinforced unidirectional composites to obtain the equations that finally offer the required values. The epoxy matrix Fibredux 6376C is reinforced with carbon fibers T800 and the thermoplastic specimens made by APC2 material is reinforced with carbon fibers of the type IM6. The experimental results give a good concordance with the theoretical predictions.

UI MeSH Term Description Entries

Related Publications

Mostafa Katouzian, and Sorin Vlase
January 2012, Dental materials journal,
Mostafa Katouzian, and Sorin Vlase
October 2020, Materials (Basel, Switzerland),
Mostafa Katouzian, and Sorin Vlase
October 2009, Journal of prosthodontic research,
Mostafa Katouzian, and Sorin Vlase
March 2018, Materials (Basel, Switzerland),
Mostafa Katouzian, and Sorin Vlase
January 2007, Journal of clinical orthodontics : JCO,
Mostafa Katouzian, and Sorin Vlase
December 2014, Orthopedics,
Mostafa Katouzian, and Sorin Vlase
January 2023, Materials (Basel, Switzerland),
Mostafa Katouzian, and Sorin Vlase
May 2010, Bioresource technology,
Copied contents to your clipboard!