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Steel and Composite Structures

Code: CVD029     Sigla: EMM

Áreas Científicas
Classificação Área Científica
OFICIAL Mecânica e Estruturas

Ocorrência: 2020/2021 - 2S

Ativa? Yes
Unidade Responsável: Mecânica e Estruturas
Curso/CE Responsável: Undergraduate in Civil Engineering

Ciclos de Estudo/Cursos

Sigla Nº de Estudantes Plano de Estudos Anos Curriculares Créditos UCN Créditos ECTS Horas de Contacto Horas Totais
CIVD 11 Study Plan 3 - 7 75 189

Docência - Responsabilidades

Docente Responsabilidade
Paulo Jorge Cunha Mendonça

Docência - Horas

Theorethical: 2,00
Practical and Laboratory: 2,00
Type Docente Turmas Horas
Theorethical Totais 1 2,00
Paulo Jorge Cunha Mendonça 1,00
Practical and Laboratory Totais 1 2,00
Paulo Jorge Cunha Mendonça 2,00

Língua de trabalho

Portuguese
Obs.: Português

Objetivos

It is intended that after the attendance of this course unit, students are able to: (i) to understand the behaviour of a
steel and composite structures; (ii) to design and to verify the safety of beams, columns, beam-columns and frames
of current steel structures; (iii) to design and to verify the safety of composite concrete-steelbeamssteel beams,
and; (iv) to design and to verify the safety of joints in steel and composite structural systems.

Resultados de aprendizagem e competências

With the syllabus taught at the chapter "Steel structures" the students acquire the ability to design and to verify the
safety of beams, columns, beam-columns and frames of current steel structures. With the syllabus taught at the
chapter "Composite steel-concrete structures" the students acquire the ability to design and to verify the safety of
composite concrete-steel beams. With the syllabus taught at the chapter "Connections" the students acquire the
ability to design and to verify the safety of joints in steel and composite structural systems. With the articulation of
all program contents taught in the unit course the students acquire the ability to understand the behaviour of steel
and composite structures.

Modo de trabalho

Presencial

Pré-requisitos (conhecimentos prévios) e co-requisitos (conhecimentos simultâneos)

MECÂNICA A e ANÁLISE DE ESTRUTURAS ISOSTÁTICAS
RESISTÊNCIA DE MATERIAIS I e II


MODELAÇÃO E ANÁLISE DE ESTRUTURAS, BETÃO ESTRUTURAL

DIMENSIONAMENTO DE ESTRUTURAS

Programa

Steel structures (7 weeks): Materials. Codes. Basis of design. Fundamental concepts of stability. Cross-section
classification. Resistance of cross-sections of the class 1 to 3. Buckling of columns and beams. The effect of
imperfections and residual stresses. Verification of the safety of columns, beams and beam-columns. Frame
stability. P- effects. Frame imperfections. Analysis methods.
Composite steel-concrete structures (4 weeks): Materials. Codes. Basis of design. Composite beams. Analysis
methods. Influence of construction sequence. Effective width of concrete flanges. Cross-section classification.
Resistance of cross-sections of the class 1 to 3. Lateral buckling. Full shear connection. Transverse reinforcement.
Connections (3 weeks): Materials. Codes. Basis of design. Bolted connections. Welded connections. Steelconcrete
connections.

Bibliografia Obrigatória

Ferreira, P.; Folhas de acompanhamento da disciplina
Mendonça, P.; Folhas de acompanhamento da disciplina
Comité Europeu de Normalização, Bruxelas, Bélgica, 2005.; EN 1993-1-1 Eurocode 3: Design of Steel Structures, Part 1.1: General Rules and Rules for Buildings.
Comité Europeu de Normalização, Bruxelas, Bélgica, 2005.; EN 1993-1-8 Eurocode 3: Design of Steel Structures, Part 1.8: Design of Joints.
Comité Europeu de Normalização, Bruxelas, Bélgica, 2004.; EN 1994-1-1 Eurocode 4: Design of Composite Steel and Concrete Structures, Part 1.1: General Rules and Rules for Buildings.
Simões, R; Manual de dimensionamento de estruturas metálicas.,, Associação Portuguesa de Construção Metálica e Mista
Calado, L. e Santos, J. ; Estruturas mistas de aço e betão, IST Press, 2010

Métodos de ensino e atividades de aprendizagem

In theoretical classes will be taught the theoretical component of the program of the course unit accompanied,
whenever possible, by the resolution of practical cases of application of the concepts. In practical classes will be
monitoring the students in the resolution of practical work.

Due to the pandemic situation, classes were totally, or partially, at a distance using a certain platform.

Software

ROBOT Structural Analysis
SAP 2000 - Structural Analysis Program

Tipo de avaliação

Distributed evaluation without final exam

Componentes de Avaliação

Designation Peso (%)
Teste 70,00
Trabalho escrito 30,00
Total: 100,00

Componentes de Ocupação

Designation Tempo (Horas)
Estudo autónomo 4,50
Frequência das aulas 4,00
Trabalho escrito 4,10
Total: 12,60

Obtenção de frequência

Not applicable

Fórmula de cálculo da classificação final

FINAL NOTE IS THE MAXIMUM BETWEEN:

Exam

(i) 100% Exam (1st Season, 2nd Season or Special Season);

Continuous assessment
(ii) Continuous assessment consists of: (iii) 15% work group1 + 15% work group1 + 70% Test.


Mode EaD

Exam

(i) 100% Exam (1st Season, 2nd Season or Special Season);

Continuous assessment
(ii) Continuous assessment consists of: (iii) 15% work group1 + 15% work group1 + 70% Test.



the minimum grade in the exam is 9.5 points (9.5 / 20).

If the final mark exceeds 16 values, the student must take an oral test.

Continuous assessment consists of: 2 group assignments and a test

Fraud Mitigation Methodology

evaluation

(i) 100% Presentation of the Work Discussion

Provas e trabalhos especiais

The work will consist of checking the safety of a steel column-beam, and a concrete-steel beam.
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