Materials and Production Engineering — Study Plan 


Plan A Type A 1 

CodeCourses Credits(Lecture/Practice/Self-study Hours)
090135198Master Thesis46
 Total46
 Grand total46

Plan A Type A 2

  • Year 1 Semester1
CodeCoursesCredits(Lecture/Practice/Self-study Hours)
090135104Production Management3(3-0-6)
090135110Manufacturing Technology3(3-0-6)
0901352xxElective Course3(3-0-6)
0901352xxElective Course 3(3-0-6)
090xx5xxxElective Course 3(3-0-6)
 Total15(x-x-x)

  • Year 1 Semester 2
CodeCourses Credits(Lecture/Practice/Self-study Hours)
090135108Materials Testing3(2-2-5)
0901352xxElective Course III3(3-0-6)
0901352xxElective Course IV3(3-0-6)
0901352xxElective Course V3(3-0-6)
0901352xxElective Course VI3(3-0-6)
 Total15(x-x-x)

  • Year 2 Semester 1
CodeCourses Credits(Lecture/Practice/Self-study Hours)
090135199Industrial Internship4
 Total4

  •  Year 2 Semester 2
CodeCourses Credits(Lecture/Practice/Self-study Hours)
090135198Master Thesis12
 Total12
 Grand total46(X-X-X)

       Required credits for the curriculum 46 credits


1st Semester

2nd  Semester

1st Semester Course Description

CodeCoursesCredits(Lecture/Practice/Self-study Hours)
090135104Production Management3(3-0-6)
Production management. Using operation to complete. Develop process strategy. Analyzing processes. Managing Quality. Total quality control. Planning capacity. Managing process constraints. Designing Lean system. Managing inventories. Designing effective supply chains. Locating Facility. Planning and scheduling operations. Managing demand.
090135225Materials Selection and Design3(3-0-6)
Materials selection, especially together with other components fabricated by other materials. Ashby chart.  Consideration criteria for materials selection: price, strength, density, thermal conductivity, thermal expansion, electrical conductivity, corrosion resistance, galvanic series, ability to recycle, alternative materials, green materials.
090135110Manufacturing Technology3(3-0-6)
Mechanical properties of materials, Techniques used to determine those properties as well as basic polymer engineering rheological properties The second part will overview a principle of manufacturing technologies, including forming (sheet and bulk) processes, casting process and powder metallurgy process as well as polymer processing   Some specific in forming technologies such as sheet and bulk forming using case studies to the emphasis in the ongoing research in those processes. 
090135213Transport Phenomena in Materials Engineering3(3-0-6)
Fundamentals of heat transfer, mass transfer and fluid flow (momentum transport) in metallurgical and materials processing. Thermal conductivity, Fourier’s law, heat conduction, convection, radiation, system boundaries, one dimensional steady state heat conduction, transient heat conduction, numerical methods for heat conduction, mass diffusion, Fick’s law, viscous behavior of fluids, conservation laws, fluid statics, laminar and turbulent flow. 
090135217Polymer Processing3(3-0-6)
Principle and application of polymer processing. Practical detail of conventional process such as extrusion, injection, blow molding, compression, thermo forming, and rotational molding. 
090135222Machine Tools3(3-0-6)
Introduction to various machine tools. Design of machine components. Optimization of machine components. Evaluation of machine tools. Measuring instruments for machine tools evaluation, Automation technology for machine tools. Control systems, Numerical control. Communication technology and command control, Integrated manufacturing systems, Machine tool monitoring and diagnosis, Artificial intelligence in machine tool monitoring. 


Course Description