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FACULTY of ENGINEERING / DEPARTMENT of GEOMATICS ENGINEERING

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FACULTY of ENGINEERING / DEPARTMENT of GEOMATICS ENGINEERING /
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MM1002Computer Aided Engineering Drawing2+2+0ECTS:5
Year / SemesterSpring Semester
Level of CourseFirst Cycle
Status Compulsory
DepartmentDEPARTMENT of MECHANICAL ENGINEERING
Prerequisites and co-requisitesDC must have been achieved from MM1003-Engineering Drawing
Mode of DeliveryFace to face, Practical
Contact Hours14 weeks - 2 hours of lectures and 2 hours of practicals per week
LecturerDoç. Dr. Hüccet KAHRAMANZADE
Co-LecturerDOCTOR LECTURER Hüccet KAHRAMANZADE,ASSOC. PROF. DR. Hasan BAŞ,PROF. DR. Olkan ÇUVALCI,
Language of instructionTurkish
Professional practise ( internship ) None
 
The aim of the course:
The students will be able to read the technical drawing skills by explaining the basic rules of forming the assembly of machine parts according to technical drawing rules. However, students will be able to complete the assembly of the parts starting from the parts design. In this way, students will gain the ability to better understand and understand technical drawings and better understand the relationship between part design - assembly - production.
 
Learning OutcomesCTPOTOA
Upon successful completion of the course, the students will be able to :
LO - 1 : Students will be able to learn the 3D model drawing, transfer to 2D environment, dimensioning and assembly relations of detachable machine elements (bolts, nuts, pins, wedges).4,71,3
LO - 2 : Students will learn machine drawing (welding, soldering, rivet, etc.) of the non-removable machine with 3D model, transferring to 2D environment, dimensioning and assembly relations.4,71,3
LO - 3 : Students will be able to learn the 3D model drawing of computer elements of bearings, gears and belt pulley mechanisms used in machine constructions, transferring to 2D environment, dimensioning and assembly relations.4,71,3
LO - 4 : Learn how to make a model, parts model and detail drawings, dimensioning and tolerance of a project using a solid program. This will improve the ability to read and understand technical drawings. 4,71,3
CTPO : Contribution to programme outcomes, TOA :Type of assessment (1: written exam, 2: Oral exam, 3: Homework assignment, 4: Laboratory exercise/exam, 5: Seminar / presentation, 6: Term paper), LO : Learning Outcome

 
Contents of the Course
Introduction of basic commands of 3D solid modeling program, Introduction to assembly, modeling of machine elements (bolts, nuts, other threaded elements, gears, cams, locking devices) by 3D solid modeling, obtaining 2D views from solid models, dimensioning, tolerance and surface development, assembly techniques in solid modeling, techniques for obtaining three views of assemblies and sectioning techniques.
 
Course Syllabus
 WeekSubjectRelated Notes / Files
 Week 1Screw joints. Computer aided 3D modeling, obtaining 2D drawings from the model, dimensioning and tolerance.
 Week 2Wedged joints. Screw joints. Computer aided 3D modeling, obtaining 2D drawings from the model, dimensioning and tolerance.
 Week 3Pin joints, perno joints. Screw joints. Computer aided 3D modeling, obtaining 2D drawings from the model, dimensioning and tolerance.
 Week 4Welded joints, Screw joints. Computer aided 3D modeling, obtaining 2D drawings from the model, dimensioning and tolerance. Creating 3D assembly and 2D assembly drawings.
 Week 5Springs. Cams.Screw joints. Computer aided 3D modeling, obtaining 2D drawings from the model, dimensioning and tolerance. Creating 3D assembly and 2D assembly drawings.
 Week 6Belts and pulleys. Screw joints. Computer aided 3D modeling, obtaining 2D drawings from the model, dimensioning and tolerance. Creating 3D assembly and 2D assembly drawings.
 Week 7Bearings. Screw joints. Computer aided 3D modeling, obtaining 2D drawings from the model, dimensioning and tolerance. Creating 3D assembly and 2D assembly drawings.
 Week 8Gears. Computer aided 3D modeling, obtaining 2D drawings from the model, dimensioning and tolerance. Creating 3D assembly and 2D assembly drawings.
 Week 9Mid term exam.
 Week 10Computer aided 3D modeling of different machine elements, obtaining 2D drawings from the model, dimensioning and tolerance. Creating 3D model and obtaining 2D assembly drawings.
 Week 11Computer aided 3D modeling of different machine elements, obtaining 2D drawings from the model, dimensioning and tolerance. Creating 3D model and obtaining 2D assembly drawings.
 Week 12Computer aided 3D modeling of different machine elements, obtaining 2D drawings from the model, dimensioning and tolerance. Creating 3D model and obtaining 2D assembly drawings.
 Week 13Computer aided 3D modeling of different machine elements, obtaining 2D drawings from the model, dimensioning and tolerance. Creating 3D model and obtaining 2D assembly drawings.
 Week 14Computer aided 3D modeling of different machine elements, obtaining 2D drawings from the model, dimensioning and tolerance. Creating 3D model and obtaining 2D assembly drawings.
 Week 15Computer aided 3D modeling of different machine elements, obtaining 2D drawings from the model, dimensioning and tolerance. Creating 3D model and obtaining 2D assembly drawings.
 Week 16Final exam
 
Textbook / Material
1Şen, İ. Z., Bora, H.Solid Works, De-Ha yayıncılık, İstanbul.
2Ders notu föyleri.
 
Recommended Reading
1Gediktaş, M., Özdaş, N. 1988; Teknik Resim, Çağlayan Kitabevi İstanbul.
2Şen, İ. Z., Özçilingir, N. 2005; Standart Makine Elemanları Çizelgeleri, DEHA Yayıncılık, İstanbul.
 
Method of Assessment
Type of assessmentWeek NoDate

Duration (hours)Weight (%)
Mid-term exam 8 4/6/04/2020 4 25
Practice 1
14
112 25
End-of-term exam 16 5/8/9/06/2020 4 50
 
Student Work Load and its Distribution
Type of workDuration (hours pw)

No of weeks / Number of activity

Hours in total per term
Yüz yüze eğitim 2 14 28
Arasınav için hazırlık 1 8 8
Arasınav 3 1 3
Uygulama 2 14 28
Ödev 5 14 70
Dönem sonu sınavı için hazırlık 1 6 6
Dönem sonu sınavı 3 1 3
Diğer 1 1 4 4
Total work load150