Course detail
Theoretical Basis of Composite Materials
FAST-DJ54Acad. year: 2009/2010
The present structure of material industry, development of composite materials, classification of composite materials into basic types and their characteristics. Definition of composite materials the explanation of composite behaviour. The variables which define the properties of composites. The structural distribution of composites – production problems. Fibrous composites - long and short fibres. Unidirectional composites - the relative proportion of phases (volume and mass proportion of components, basic calculation equations). Longitudinal strength and rigidity, stress-strain diagram under tensile stress (graphs, basic calculation relations). Thermal dilatation and transport properties (graphs, equations for basic calculation). Carbon, steel, glass and polypropylene fibres. Composites reinforced by strip stiffeners. Particle composites and their classification. Concrete with polymers – binders, fillers, aggregates, admixtures and modifiers. Production and properties. Polymer-cement mortars and concrete. Impregnated concrete. Utilization of mortars and concrete with polymers. Mortars and concrete with bitumen - asphalt, asphaltic bitumen, aggregate admixtures. Bituminous mixtures, asphalt concrete, cast asphalt. Binders for bituminous mortars and concrete, classification, properties. Fillers for bituminous mortars and concrete, properties. Admixtures to asphalt-concrete.
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Course curriculum
2.Definition of composite effect, variables defining the composite properties, their structural classification.
3.Design of composites.
4.Particles composites of I. till III.type; specific characteristics.
5.Fibre composites, fibres, matrices.
6.Composite materials with cement matrix and fibrous reinforcement.
7.Glass-fibre-concrete, fibre-concrete with polymer fibres, design, application.
8.Fibre-concrete with steel fibres, design, application.
9.Composite materials with polymer matrix and fibrous reinforcement.
10.Technology composite materials manufacture, with polymer matrix and fibre reinforcement.
11.New materials for strengthening of structures, lamellas, reinforcing fabrics.
12.Composites reinforced by bands. Laminates. Hybrid composites
13.Unidirectional composites, abundances of fibres. Mechanics of unidirectional composites.Longitudinal strength and stiffness, stress strain diagram during tensile load (graphs, basic calculation formulae, Behaviour in the case of failure. Thermal dilatation and transport properties. Elasticity modulus and strength of short-fibre composites.
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