Information Package / Course Catalogue
Computer Aided Design II
Course Code: TMT201
Course Type: Required
Couse Group: Short Cycle (Associate's Degree)
Education Language: Turkish
Work Placement: N/A
Theory: 2
Prt.: 2
Credit: 3
Lab: 0
ECTS: 4
Objectives of the Course

By using a basic CAD program, students will be able to draw machine construction drawings and assembly drawings in 3D (three dimensions) along with dimensioning, use ready-made shapes and objects, perform 3D modeling within the CAD environment, and output (print) these drawings.

Course Content

Learning drafting and design techniques for manufacturing and engineering layout.

Name of Lecturer(s)
Learning Outcomes
1.Setup/install the CAD environment.
2.Build geometric models and configurations utilizing 3D CAD commands.
3.Draft detailed 3D machinery parts and full mechanism assemblies within the CAD system.
4.Apply precise mechanical dimensioning and tolerances to 3D parts and assembly drawings inside CAD software.
5.Execute area, volume, and center-of-gravity calculations using structural mass properties in CAD suites.
Recommended or Required Reading
1.SolidWorks 2026- 2027
Weekly Detailed Course Contents
Week 1 - Theoretical
Advantages of 3D mechanical design software, introduction and utilization of the 3D Mechanical CAD software interface
Week 2 - Theoretical
Creating shapes using sketching/drawing commands, dimensioning shapes, and parametric design
Week 3 - Theoretical
Solid modeling features
Week 4 - Theoretical
Editing commands on solid models, making modifications on solid geometry
Week 5 - Theoretical
Surface modeling commands and sheet metal part modeling features
Week 6 - Theoretical
Sheet metal modeling features and welded part modeling commands
Week 7 - Theoretical
Engineering drawing generation commands - creating engineering layouts and manufacturing drawings from modeled parts
Week 8 - Theoretical
Material assignment to modeled parts; mass, weight, volume, surface area, and center of gravity calculations via mass properties; basic stress/force analysis applications
Week 9 - Theoretical
Material assignment to modeled parts; mass, weight, volume, surface area, and center of gravity calculations via mass properties; basic stress/force analysis applications
Week 10 - Theoretical
Generating assembly files and introducing basic assembly tools/constraints
Week 11 - Theoretical
Incorporating screw, gear, cam, and limited linear/angular motion relationships in assemblies; editing components directly within the assembly environment
Week 12 - Theoretical
Inserting ready-made standard components into assemblies; performing interference/clash detection tests and mechanism simulations
Week 13 - Theoretical
Arranging assembly views within engineering drawings, ballooning, formatting bills of materials (BOM), and creating 3D exploded views
Week 14 - Theoretical
Comprehensive capstone practice: modeling components of a simple mechanism, assembling them, and producing standard technical drawings
Assessment Methods and Criteria
Type of AssessmentCountPercent
Attending Lectures1%5
Assignment1%5
Midterm Examination1%30
Final Examination1%60
Workload Calculation
ActivitiesCountPreparationTimeTotal Work Load (hours)
Lecture - Theory140228
Lecture - Practice140228
Assignment1808
Individual Work50210
Midterm Examination111011
Final Examination114115
TOTAL WORKLOAD (hours)100
Contribution of Learning Outcomes to Programme Outcomes
PÇ-1
PÇ-2
PÇ-3
PÇ-4
PÇ-5
PÇ-6
PÇ-7
PÇ-8
PÇ-9
PÇ-10
PÇ-11
PÇ-12
OÇ-1
4
4
4
4
5
5
4
4
4
4
2
2
OÇ-2
5
4
5
5
4
5
4
5
4
3
2
1
OÇ-3
4
5
5
5
4
4
5
4
5
4
2
2
OÇ-4
5
4
5
5
5
4
4
5
5
4
3
2
OÇ-5
4
4
4
4
5
5
5
5
5
5
2
2
Adnan Menderes University - Information Package / Course Catalogue
2026