Course Module
Department of Agricultural Engineering Faculty of Agricultural Technology Universitas Brawijaya
Module name Technical Drawing Module level Undergraduate program
Code TPE4136
Subtitle -
Courses -
Semester(s) 3
Person responsible for the module
Angky Wahyu Putranto, STP, MP
Lecturer 1) Yusuf Hendrawan, STP, M.App.Life.Sc, PhD 2) Darmanto, ST, MT
3) Angky Wahyu Putranto, STP, MP Language Bahasa Indonesia, English
Relation to curriculum Compulsory/elective Type of teaching,
contact hours
Contact hours and class size separately for each teaching method:
lecture, lesson, practical, project, seminar etc.
Workload 136 hours/semester
Lecture, Exercise, and private study Credit points 3 SKS / 5 ECTS
Requirements according to the examination regulations
-
Recommended prerequisites Module
objectives/intended learning outcomes
ILO-1 : An ability to use engineering principles in designing technology products related to the field of agricultural engineering science
ILO-2 : Having an attitude, creative and innovative thinking in working with consistently follow professional ethics
ILO-6 : An ability to conduct research, explore, develop and apply science and technology in the field of agricultural engineering science
Objectives
Knowledge: explanation of the principles of engineering drawing according to ISO standards with practices for drawing objects
Skills: cognitive – apply the principles of drawing techniques according to ISO standards manually and using CAD
Phsycomotoric - drawing machine elements by applying the principles of drawing techniques according to ISO standards manually and using CAD
Competences: Students able to drawing product designs in the field of agricultural and agro-industrial engineering or agribusiness by applying the principles of technical drawing according to ISO standards
Content Courses:
1) Introduction to technical drawing: definition, objectives, drawing tools, drawing paper, head of the image / title block, scale, outline, and units (CLO-1)
2) The principles of technical drawing according to ISO standards (CLO-1, CLO -2)
a. Standard line, letter, number, and geometric constructions b. Standard grading
c. Orthographic and axonometric projections d. Sectional view
e. Image presentation
3) The principle of describing the components of nuts and bolts, threads, springs, bearings, gears, transmission systems, and welding manually and using CAD (CLO-1, CLO-2, CLO-3)
Laboratory practices:
1. Introduction to CAD and assignment 1 (CLO-1)
2.AutoCAD basics and 2D drawing practice: AutoCAD menus and toolbars, 2D drawing exercises (CLO-1, CLO-2)
3. Task 2: draw 2D (CLO-1, CLO-2)
4.Practice rendering and 3D drawing: windmills (CLO-1, CLO-2, CLO-3) 5.Projection and plotting practice (CLO-1)
6. Task 3: draw 3D (CLO-1, CLO-2, CLO-3) 7. STEAM (CLO-1, CLO-2, CLO-3)
Study and examination requirements and forms of examination
1. Midterm exam 2. Final term exam 3. Assignment 4. Group assignment
5. Laboratory Practice Report 6. Laboratory Practice Final Exam
How to score:
Midterm Exam(1-5) = 18%
Final Exam (1-4) = 28%
Assignment = 24%
Laboratory Practice (Report, Lab. Exam, Final Project) = 30%
A : 80 < Final Score ≤ 100 B+ : 75 < Final Score ≤ 80 B : 69 < Final Score ≤ 75 C+ : 60 < Final Score ≤ 69 C : 55 < Final Score ≤ 60 D : 50 < Final Score ≤ 55 D+ : 44 < Final Score ≤ 50 E : 0 < Final Score ≤ 44
Media employed Class, Online learning system (Zoom and Google Classroom), Laboratory Practice
Reading list 1. G.T. Sato dan K.S. Hartatnto. Menggamnar Mesin Menurut Standar ISO. 2003. Pradnya Paramita
2. D.A. Madsen dan D.P. Madsen. Engineering Drawing and Design.
2012. Delmar Cancage Learning.