
| Course Code | : BSM435 |
| Course Type | : Area Elective |
| Couse Group | : First Cycle (Bachelor's Degree) |
| Education Language | : Turkish |
| Work Placement | : N/A |
| Theory | : 2 |
| Prt. | : 0 |
| Credit | : 2 |
| Lab | : 0 |
| ECTS | : 4 |
To introduce three dimensional computer drawings of objects and techniques. To teach techniques to create technical drawing objects in computer studies and plotted output from a printer or plotter. Storage of information and to explain the procedures for sending to other sources.
To introduce CAD and explain content of course To introduce using software during the course. To give setup procedure of software. To run software and organize all drawing settings.To explain active measurement system, and parametric modeling To introduce of design topics will be used to create of 3D objectsIntroduction to part modeling and assembly modeling issues To introduce software interface To introduce toolbars and desktop browser Pull-up menus -Short line types-Recent used commands-Other toolbars-To introduce part, models, scene and drawing modes Insertion tool bars and to run commands-To use command line To save file, to save file with another format and names, close and exit from software. To introduce key terms such as 2D constraint, closed-loop, closed profiles, structural geometry and structural lines be used. in the design To introduce object revision commands used in design To create sketch path, sketch tolerance, sketch text To create open and closed profile To use geometric constraint To use rounded loops • To create a 2D sketch path • To create a 3D sketch path • To create a 3D edge path • To create a 3D helical path • To create a 3D pipes path • To create a 3D spline path To create a section line sketch To create an offset section line sketch To use a geometrical and dimensional constraints on the sketch Sketch editing and additional operations To use structure geometry on a sketch profile To use controlled tangent on sketch Parametric building commands • Extrude • Extrude thin • Emboss • Loft • Revolve • Face split • Sweep • Bend To use work axis, work plain and work point Additional functions to be used in the design of part • Hole • Face Draft • Fillet • Chamfer • Shell • Surface Cut • Pattern • Copied Future • Combined Future • Part Split To take plot out of design • To create a basic wiev • To create Epure • To create a cross-section view • To create a detailed view • Parametric editing of view • To modify isometric view • To make an additional changes To create a assembly • The basic operations in assembly • To add and delete external parts to ground part • To use 3 D constraints in assembly • To use Desktop Browser in assembly To calculate part space area, part volume and part mass • To create assembly view • To create exploded views • To create assembly views • To create drawing views and to get plot out • To create the view of the main assembly • To create the isometric view of assembly To modify of parametric assembly To modify 3D constraint in assembly To create and edit of surface • Working with primitive surface • Motion-based surface creation • The work wit NURB surface • To create skin surface • To create three ruled surfaces from polylines drawn with sharp corners • To create trimmed planar surface • To create blended surface • Surface editing Creating and working with existing standard parts • Create a standard bolt connection in assembly • Create standard shaft and shaft geometry • To add thread to a shaft • To add a profile to a shaft • To make changes on the shaft segments • To insert a standard bearing to shaft Calculating stress on 3D parts To add and define stress loads and supports on part • To create mesh view of part • To take and evaluation of results stress analysis on part To hand over file about drawing applications
| Lec. Nurettin TOPUZ |
| 1. | To make an parametric modeling by using software. |
| 2. | To work on 3D parts and objects created with the help of processing commands and to create the final product. |
| 3. | To save the files on the computer generated 3 D models and assemblies, and get plot out, to send the generated files to other sources. |
| 4. | To create a assembly |
| 5. | Surface creation and editing |
| 1. | öğretim elemanı ders notları |
| 2. | A.N. Bıçakçı, M. Erkmen 2011, Solidworks Solidcam 2011 Tasarım-Üretim Kodlab Yayın, 2011; 656sayfa |
| Type of Assessment | Count | Percent |
|---|---|---|
| Midterm Examination | 1 | %40 |
| Final Examination | 1 | %60 |
| Activities | Count | Preparation | Time | Total Work Load (hours) |
|---|---|---|---|---|
| Lecture - Theory | 14 | 4 | 3 | 98 |
| Midterm Examination | 1 | 0 | 1 | 1 |
| Final Examination | 1 | 0 | 1 | 1 |
| TOTAL WORKLOAD (hours) | 100 | |||
PÇ-1 | PÇ-2 | PÇ-3 | PÇ-4 | PÇ-5 | PÇ-6 | PÇ-7 | PÇ-8 | PÇ-9 | PÇ-10 | PÇ-11 | |
OÇ-1 | 5 | 3 | 5 | 5 | 3 | 4 | 5 | 5 | 4 | 2 | |
OÇ-2 | 5 | 3 | 5 | 5 | 3 | 4 | 5 | 5 | 4 | 2 | |
OÇ-3 | 5 | 3 | 5 | 5 | 3 | 4 | 5 | 5 | 4 | 2 | |
OÇ-4 | |||||||||||
OÇ-5 | |||||||||||