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ARC 257 STEEL STRUCTURES 201 2 -201 3 Spring Term

DEPARTMENT of ARCHITECTURE. INTERNATIONAL BURCH UNIVERSITY. ARC 257 STEEL STRUCTURES 201 2 -201 3 Spring Term. Class Schedule: Monday : 09: 00- 10 : 45 (Practical Session) Tuesday : 09: 00- 10 : 45 (Lectures) Office Hour: Open Door Policy. Course Objectives.

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ARC 257 STEEL STRUCTURES 201 2 -201 3 Spring Term

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  1. DEPARTMENT of ARCHITECTURE INTERNATIONAL BURCH UNIVERSITY ARC 257 STEEL STRUCTURES 2012-2013SpringTerm

  2. Class Schedule: Monday: 09:00-10:45 (Practical Session) Tuesday: 09:00-10:45 (Lectures) • Office Hour:Open Door Policy

  3. Course Objectives • This course aims to introduce the students to aplication of steel as structural material for structures and behaviour of steel structures. • Students will be introduced with design process, from load analysis to providing cross-section for each structural element. • Understanding different types of steel structural element, the way of transfering the loads, connection between same and different cross-section types and elements. • Effects of fire and corrosion on steel elements. • Understanding composite reinforced concrete and steel structural element and its behaviour.

  4. Textbooks • Trebilcock P., Lawson M.: Architectural Design in Steel, Taylor & Francis, 2004. • Williams A.: Steel Structures Design ASD/LFRD, International Code Council, 2012. • American Institute of Steel Construction: Design with Structural Steel – A Guide for Architects, ISBN 1-56424-052-5. • Gardner L., Nethercot D.A.: Designers' Guide to EN 1993-1-1 Eurocode 3: Design of steel structures general rules and rules for buildings, Thomas Telford, 2005. • N.S. Trahair, M.A. Bradford, D.A. Nethercot, L. Gardner, The Behaviour and Design of Steel Structures to EC 3, Fourth edition, Taylor & Francis, 2008.

  5. Brief Contents • Introduction, Types of Steel Structures. • Analysis and Design of Steel Structures. • Tension Members. • Beam Analysis. • Compression Members. • Frames and Framing. • Trusses. • Structural Joints. • Design of Bolts and Welds. • Fire Protection, Corrosion and Corrosion Protection. • Introduction to Composite Reinforced Concrete and Steel Structures.

  6. Grading • Attendance and Activity 5% • 1st Assignment 5% • 2nd Assignment 10% • 3rd Assignment 10% • 4th Assignment 10% • Midterm Examination 25% • Final Examination 35%

  7. Presentations • Introduction, Types of Steel Structures, Design Procedure. • Properties of the Steel, Production Technology, Members and Structural Members, Buckling Effect. • Frames aBehaviour. • Loads and Design Actions, Analysis and Design of Steel Structures. • Tension Members. • Beam Analysis, Lateral Buckling of Beams. • Compression nd Framing. • Trusses. • Structural Joints.

  8. Presentations • Connections Between I-sections, Connections Between Tubular Sections. • Design of Bolts and Welds. • Fire Protection, Corrosion and Corrosion Protection. • Introduction to Composite Reinforced Concrete and Steel Structures. • Composite Beams and Columns, Composite Deck Slabs.

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