Course syllabus

010813203-65 การออกแบบคอนกรีตอัดแรง (Prestressed Concrete Design)

Course Syllabus

Data entry : Assoc.Prof. Dr.Pison Udomworarat
1. Course number and name

010813203-65 การออกแบบคอนกรีตอัดแรง (Prestressed Concrete Design)

2. Credits and contact hours

3(3-0-6)

3. Instructor’s or course coordinator’s name

Assoc.Prof. Dr.Pison Udomworarat

4. Text book, title, author, and year

  1. พิสณฑ์ อุดมวรรัตน์ เอกสารการสอน การออกแบบคอนกรีตอัดแรง
  2. นเรศ พันธราธร การออกแบบคอนกรีตอัดแรง สำนักพิมพ์ Library Nine 2541
  3. T.Y. Lin & N.H. Burns, John Wiley & Sons
  4. PCI, www.pci.org/intro.cfm

5. Specific course information

  1. brief description of the content of the course (catalog description)
    Prestressing methods and theories, Materials and Prestressing Products, Prestressing Losses, Load Balancing, Design of prestressed member under bending and shear forces, beams, Structural behavior under loads, Post tensioned slab design.
  2. prerequisites or co-requisites
    010813210-65 Reinforced Concrete Design
  3. indicate whether a required, elective, or selected elective (as per Table 5-1) course in the program
    Elective :

6. Specific goals for the course

  1. specific outcomes of instruction (e.g. The student will be able to explain the significance of current research about a particular topic.)
    1. CLO1 1. Apply mathematics and engineering basic knowledge
    2. CLO2 2. Formulate equation; determine the member forces and stresses of the structural members.
    3. CLO3 3. Design of prestressed concrete members
    4. CLO4 4. Have technical knowledge concerning about safety design provision, accuracy and liability of the design.
  2. explicitly indicate which of the student outcomes listed in Criterion 3 or any other outcomes are addressed by the course.
    ABET Student Outcome (SO) Listed in Criterion 3 Course learning outcome (CLO)
    PO3 : การออกแบบและพัฒนาเพื่อหาคำตอบของปัญหา การออกแบบและพัฒนาเพื่อหาคำตอบของปัญหา
    • CLO3 3. Design of prestressed concrete members

7. Brief list of topics to be covered
Week Topic Details Activities
1 Introduction to PC structures, PC Technology, Prestressed and Post tensioned Structures, Comparison of PC and RC Structures
2 PC Materials, Stresses in PC sections
3 PC loss I
4 PC loss II
5 Load Balancing
6 Analysis and Design of PC Beam at Service Loads
7 Analysis and Design of PC Beam at Ultimate Loads
8 Analysis and Design of PC Beam by Magnel’s Method
9 Deformation of PC Beam
10 Alignment of Tendons in PC Member
11 PC members under Shear
12 Design of Post Tensioned Slab I
13 Design of Post Tensioned Slab II
14 Design of Anchorage Zone
15 Design of Composite Members
8. Course Assessment
Course assessment Weight score (%) Assessment tools Date
Group assessment and minimum score evaluation 100 quiz, midterm examination, final examination 15 Aug 2025 - 31 Mar 2026

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