Showing posts with label Reinforced Concrete. Show all posts
Showing posts with label Reinforced Concrete. Show all posts

Wednesday, December 6, 2023

Reinforced Concrete Design to Eurocode : general concepts on reinforced concrete, centred axial force, bending moment, shear, beams in bending, eccentric axial force, instability problems, torsion, structural elements for foundations, pre-stressed beams, resistance calculations, foundation design, continuous foundations, footing foundations, calculation of internal forces, design of columns, failure mechanisms of the section, deflection calculations, analysis of actions, beams with shear reinforcement, cracking of beams, moment-curvature diagrams, elastic and resistance design, failure criteria of concrete, principles of creep, resolution of the integral equation, behavior of reinforced concrete sections, mechanical characteristic of reinforcement, basic assumptions for resistance calculation.
Reinforced Concrete Design(1) : properties of reinforced concrete, limit state design, analysis of the structure, analysis of the section, shear bond and torsion, serviceability, durability and stability requirements, design of reinforced concrete beams, design of reinforced concrete slabs, column design, foundations, water-retaining structures and retaining walls, pre-stressed concrete, analysis of concrete section under working loads, analysis and design at the ultimate limit state, water-retaining structures, design methods, retailing walls, piled foundations, combined footings, strap footings, loading and moments, design of short columns, design of slender columns, shear in slabs, solid slabs spanning in one direction, solid slabs spanning in two directions, design for bending, bar spacing, calculation of deflections, analysis of section subject to torsional moments, analysis of beams and frames, redistribution of moments.
Reinforced Concrete Design : materials and mechanics of bending, rectangular reinforced concrete beams and slabs tension steel, reinforced concrete beams t-beams and boubly reinforced beams, shear in beams, development splices and simple-span bar cutoffs, continuous construction design considerations, walls, columns, footings, pre-stressed concrete fundamentals, concrete formwork, detailing reinforced concrete structures, practical considerations in the design of reinforced concrete buildings, rules of thumb and practical considerations for reinforced concrete design, strength of reinforced concrete columns, analysis of short columns, analysis of rectangular pre-stressed concrete beams, lateral forces on retaining walls, design considerations for bearing walls, shear walls.
Reinforce Concrete Analysis and Design : theory of reinforced concrete, design of reinforced concrete, beams, design of reinforced concrete slabs, design of reinforced concrete columns, design of corbels and nibs, design of pad foundations, design of piled foundations, design of walls, design of flat slabs, design of connections, horizontal column and wall ties, design of compression laps, analysis of flat slabs, step-by-step design procedure for flat slabs, modelling for structural analysis, step-by-step design procedure for walls, step-by-step design procedure for piled foundations, load combinations, analysis of pile loads and pile caps, bearing pressure calculations, multiple column pads connected by ground beams, analysis for bearing pressure on soil, analysis of columns, step-by-step design procedure for slabs, design of a two-way slab panel.
Glassfibre Reinforced Concrete Principles : constituent materials, structural Design, specification and compliance, health and safety, bulk density water absorption and apparent porosity, basic function and design principles, typical structural elements, stud frame system, single skin sheet, environmental impact analysis, methods for assessment of performance, physical properties, fracture mechanisms, mechanical properties of the matrix, surface finishes and treatments, hydraulic additives, water, microsilica.
Design of Reinforced Concrete : flexural analysis of beams, strength analysis of beams according to aci code, design of rectangular beams and one-way slabs, analysis and design of t beams and doubly reinforced beams, serviceability, bond, development, lengths, and splices, shear and diagonal tension, introduction to columns, design of short columns subject to axial load and bending, slender columns, footings, retaining walls, continuous reinforced concrete structures, torsion, two-way slabs direct design method, two-way slabs equivalent frame method, walls, pre-stressed concrete, reinforced concrete masonry, fiber-reinforced concretes, dead loads, live loads, cracking moment, advantages of strength design, structural safety, strains in flexural members, beam design examples, compression steel.
Design of Reinforced Concrete Structure(1) : basic principles of reinforced concrete design, yield line theory for slabs, special structural elements, deep beams, structural action, semi-circular beam supported on three equally spaced columns, regular isotropically reinforced polygon slab continuously support on all sides, isotropically reinforced triangular slabs, skew slabs, one-way isotropically reinforced continuous slab, application to practical design problems, typical failure mechanisms, basic principles of yield line theory, equivalent frame method, direct design method, determination of design bending moments, detailing for ductility, structural drawings, shear force in columns subjected to moments, column design interaction diagrams, slender columns, axially loaded short column, use of design aids.
Design of Reinforced Concrete Structure : reinforced concrete fundamentals, design of singly reinforced sections, shear in r/c beams, bond, development, length and splicing of reinforcement, design for torsion, torsional rigidity, design of transvers reinforcement, calculation of the shear stress due to torsion, principal stresses due to torsion, splicing of reinforcement, beams with bent-up bars, the moment of resistance of a r/c beam, shear stresses in cracked r/c beams, behavior of slender beams without stirrups, design of t-sections using curves, using the design aids, basic assumptions of the flexure theory, stress-strain relationships, analysis of singly reinforced sections, maximum area of steel of a singly reinforced section balanced under and over reinforced sections, factors affection ultimate strength, reinforcing steel, limit states design method, strength reduction factors, load combinations, mechanical properties of concrete, strength of concrete under biaxial loading.