High Performance and Optimum Design of Structures and Materials V

High Performance and Optimum Design of Structures and Materials V

Encompassing Shock and Impact Loading

Schleyer, Graham; Hernandez, Santiago

WIT Press

09/2022

210

Dura

Inglês

9781784664718

15 a 20 dias

Descrição não disponível.
Section 1: Innovative materials and products
Selective reinforcement of joining interface using nanofibers in single-lap joints of thermoplastic composites fabricated by the injection overmolding process: Creep deformation behaviour; Kinetic street furniture with Arm-Z; Influence of superplasticizer type and dosage on retention of consistency of rubberized concrete


Section 2: Structural optimization
Optimization of steel and timber hall structures; Optimum design of cable-stayed bridges considering cable failure; 30 years' experience on the optimization of cable-stayed bridges; Structural topology optimization with high spatial definition by using the overweight approach


Section 3: Blast and impact loads
Analysis of charge shape influence on blast pressure; New predictive models for the ballistic limit of spacecraft sandwich panels subjected to hypervelocity impact; Assessment of coupled Lagrangian-Eulerian finite element simulations to model suction forces during hydrodynamic impacts; Engineering approach to calibrate a concrete model for high speed impact applications


Section 4: Performance and sustainability of structures
Full-scale reinforced concrete slabs with external reinforced polymer: Field test and numerical comparison; Group analytic network process for the sustainability assessment of bridges near shore; Influence of the projectile shape on the dynamic tensile characterization of concrete using a Split Hopkinson Bar; Pre-stressed reinforced concrete elements under blast loading: Numerical analysis and shock tube testing; Collapse fragility curves for seismic assessment of superplastic shape memory alloy in reinforced concrete structures
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Composite materials; Material characterisation; Natural fibre composites; Nanocomposites; Green composites; Transformable structures; Environmentally-friendly structures; Sustainable structures; Design optimisation; Aerospace structures; Lightweight structures; Sustainable design; Design durability; Structural reliability; Smart materials; Smart structures; Civil engineering; Mechanical engineering; Automotive industry; Tall buildings; Metaheuristic algorithms; Topology optimisation; BIM; Impact loading; Blast loading; Structural energy-absorption; Reinforced concrete; Seismic behaviour; Retrofitting; Industrial accidents; Industrial explosions; Composite structures; Ballistics analysis; Dynamic material behaviour; Fluid-structure interaction; Seismic soil-structure interaction