IE425 Computer Aided Design and Manufacturing

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Course Code Course Title Weekly Hours* ECTS Weekly Class Schedule
T P
IE425 Computer Aided Design and Manufacturing 3 2 6 Mo: 11:00-13:00; We: 10:00-11:00
Prerequisite Senior Standing It is a prerequisite to
Lecturer Benjamin Durakovic Office Hours / Room / Phone
E-mail bdurakovic@ius.edu.ba
Assistant Erna Keskinović Assistant E-mail ekeskinovic@ius.edu.ba
Course Objectives Developed a general understanding of fundamental CAD/CAM concepts; Learned how to use commercial CAD/CAM software for engineering design; and Learned how CAD/CAM can be used in the different stages of design and manufacture of a product.
Textbook (1) Kuang-Hua Chang, Product Design Modeling Using CAD-CAE. The Computer Aided Engineering Design Series; (2) Kuang-Hua Chang_Product Manufacturing and Cost Estimating Using CAD-CAE. The Computer Aided Engineering Design Series. (3) Introducing Solidworks, Dassault Systems
Learning Outcomes After successful  completion of the course, the student will be able to:
  1. take active role in product design and development process as well as protptyping
  2. model 3D part and assemblies using SolidWorks program
  3. analyze the part design using one of the computational methods (e.g. stress analysis)
  4. understand the concepts of computer-aided manufacturing and a number of applied associated processes
Teaching Methods Final exam is given at the end. In order to attract the attention of the students into the offered courses during the semester, some exams ( midterms) are given and also some assignments are asked. The internal exams will encourage the students to study harder during the semester time. Learning delivery: 1. Lecture Discussion and review questions. 2. Power point presentations. 3. Short Reports and homework assignments.
WEEK TOPIC REFERENCE
Week 1 Course introduction, introduction to CAD/CAM/CAE ch1
Week 2 Product development process ch1
Week 3 Basics of computer graphics and geometric representations ch2
Week 4 Solid modelling ch3
Week 5 Solid modelling ch3
Week 6 Assembly modeling ch4
Week 7 Dimensioning, parametrization, constraints ch5
Week 8 Midterm exam + CAE Analysis
Week 9 Project Assignment (2) ch2
Week 10 CNC machining,
Week 11 Project Review I, Concept
Week 12 CNC machining, (2) ch2
Week 13 Project Review II, Details
Week 14 Project Review III, Functionality
Week 15 Final Project Report Submission and Presentation
Assessment Methods and Criteria Evaluation Tool Quantity Weight Alignment with LOs
Final Exam 1 50 1,2,3,4
Semester Evaluation Compenents
Final Presentation 1 15 1,2,3,4
Homework 6 5 1,2,3,4
Mid-term Exam 1 20 1,2
Progress reports 3 30 1,2,3,4
***     ECTS Credit Calculation     ***
 Activity Hours Weeks Student Workload Hours Activity Hours Weeks Student Workload Hours
Lecture Hours 3 15 45 Project Reviews 10 3 30
Tutorials 2 15 30 Final Report & Presentation 3 1 3
Homeworks + Study 3 14 42
        Total Workload Hours = 150
*T= Teaching, P= Practice ECTS Credit = 6
Course Academic Quality Assurance: Semester Student Survey Last Update Date: 21/02/2020
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