Leonard P. Zakim Bunker Hill Bridge in Boston. (Image courtesy of the Federal Highway Administration.)
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Instructor(s)
Prof. Oral Buyukozturk
MIT Course Number
1.054 / 1.541
As Taught In
Spring 2004
Level
Undergraduate
Some Description | |
Instructor(s) | Prof. |
As Taught In | Spring 2002 |
Statistics freedman 4th edition pdfnewnevada. Course Number | 2.24 |
Level | Undergraduate/Graduate |
Features | Lecture Notes, Student Work |
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Reinforced Concrete Design Textbook Pdf
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Course Description
Course Features
Reinforced Concrete Design Examples Pdf
Course Description
The main objective of 1.054/1.541 is to provide students with a rational basis of the design of reinforced concrete members and structures through advanced understanding of material and structural behavior. This course is offered to undergraduate (1.054) and graduate students (1.541). Topics covered include: Strength and Deformation of Concrete under Various States of Stress; Failure Criteria; Concrete Plasticity; Fracture Mechanics Concepts; Fundamental Behavior of Reinforced Concrete Structural Systems and their Members; Basis for Design and Code Constraints; High-performance Concrete Materials and their use in Innovative Design Solutions; Slabs: Yield Line Theory; Behavior Models and Nonlinear Analysis; and Complex Systems: Bridge Structures, Concrete Shells, and Containments.
Professor Oral Buyukozturk thanks Tzu-Yang Yu, a graduate student at MIT, for his valuable assistance in preparing course documents.
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Reinforced Concrete Mechanics And Design Pdf
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LEC # | TOPICS | DESIGN EXAMPLES |
---|---|---|
1 | Introduction; Design Criteria for Reinforced Concrete Structures (PDF) | |
2 | Micro-cracking of Concrete; Stress-strain Behavior in Multiaxial Loading (PDF) | |
3 | Failure Theories (PDF) | |
4 | Concrete Plasticity (PDF) | |
5 | Fracture Concepts (PDF) | |
6 | Creep and Shrinkage Deformation (PDF) | |
7 | Ductility and Deflections (PDF) | |
8 | Shear Failures (PDF) | |
9 | Shear Transfer; Shear Design (PDF) | Failure Investigation of a Prestressed Concrete Bridge Girder (PDF) |
10 | Biaxial Bending (PDF) | |
11 | Beam Column Joints (PDF) | |
12 | Quiz 1 | |
13 | Torsion (PDF) | Shear and Torsion (PDF) |
14 | Term Project Update – Progress Reports and Presentations | |
15 | Torsion, Shear, and Flexure (PDF) | Shear and Torsion (PDF) |
16 | Yield Line Theory for Slabs (PDF) | Analysis of Rectangular Slabs Using Yield Line Theory (PDF) |
17 | R/C Thin Shell Structures (PDF) | |
18 | R/C Thin Shell and Structures (cont.) (PDF) | |
19 | Segmental Bridges / Tall Buildings (PDF) | |
20 | Term Project Update – Presentations | |
21 | Deterioration and Non-destructive Evaluation (NDE) of Concrete Structures (PDF) | |
22 | Earthquake Resistant Design; Repair and Seismic Retrofit of Concrete Structures (PDF) | |
23 | Quiz 2 | |
24 | Final Presentations | |
25 | Final Presentations (cont.) | |
26 | Review and Discussion |