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Mechanics Studies Other Information

Other Information

 
University first cycle (undergraduate, Bachelor' s) studies
Code Name Credits ECTS credits Department
MEMRB13606 Automatization of Technical Systems and Processes 5 5 F
MEMRB13606 Automatization of Technical Systems and Processes 5 5 H
MEMRB13606 Automatization of Technical Systems and Processes 5 5 I
MEMRB13713 Bachelor Graduation Thesis 1 3 3 F
MEMRB13713 Bachelor Graduation Thesis 1 3 3 H
MEMRB13713 Bachelor Graduation Thesis 1 3 3 I
MEMRB13815 Bachelor Graduation Thesis 3 10 10 F
MEMRB13815 Bachelor Graduation Thesis 3 10 10 H
MEMRB13815 Bachelor Graduation Thesis 3 10 10 I
MEMRB13814 Bahelor Graduation Thesis 2 5 5 F
MEMRB13814 Bahelor Graduation Thesis 2 5 5 H
MEMRB13814 Bahelor Graduation Thesis 2 5 5 I
MEMRB13301 CAD/CAM 5 5 F
MEMRB13301 CAD/CAM 5 5 I
MEMRB13609 CAD/CAM/CAE 5 5 F
MEMRB13609 CAD/CAM/CAE 5 5 H
MEMRB13609 CAD/CAM/CAE 5 5 I
MEMRB13701 CAD/CAM/CAE 3 3 F
MEMRB13701 CAD/CAM/CAE 3 3 I
MEMRB14101 CAD/CAM/CAE 3 3 I
MEMRB13201 Cognitive Practice 3 3 F
MEMRB14801 Design of Mechatronic and CAD/CAM Systems. Complex Project 5 5 F
MEMRB14801 Design of Mechatronic and CAD/CAM Systems. Complex Project 5 5 I
MEMRB14601 Design of Mechatronic and Robotic Systems 7 7 F
MEMRB14601 Design of Mechatronic and Robotic Systems 7 7 I
MEMRB13501 Elements of Mechatronics 4 4 F
MEMRB13501 Elements of Mechatronics 4 4 I
MEMRB14302 Introduction to Mechatronics and Robotics 3 3 F
MEMRB14302 Introduction to Mechatronics and Robotics 3 3 I
MEMRB13703 Mechatronic Systems 1 5 5 F
MEMRB13703 Mechatronic Systems 1 5 5 I
MEMRB13734 Mechatronic Systems 1 7 7 F
MEMRB13734 Mechatronic Systems 1 7 7 I
MEMRB13835 Mechatronic Systems 2 4 4 F
MEMRB13835 Mechatronic Systems 2 4 4 I
MEMRB13633 Nanomechanics 3 3 F
MEMRB13402 Professional Practice 1 6 6 F
MEMRB13612 Professional Practice 2 6 6 F
MEMRB13612 Professional Practice 2 6 6 H
MEMRB13801 Robotical Technology 6 6 F
MEMRB13801 Robotical Technology 6 6 I
MEMRB13702 Robotics 8 8 F
MEMRB13702 Robotics 8 8 H
MEMRB14603 Robotics 1 7 7 F
MEMRB14603 Robotics 1 7 7 I
MEMRB13704 Robotics 2 5 5 F
MEMRB13704 Robotics 2 5 5 I
 
University second cycle (graduate, Master' s) studies
Code Name Credits ECTS credits Department
MEMRM13207 Adaptive Systems in Technique 6 6 F
MEMRM13311 Control of Mechatronical Systems 6 6 F
MEMRM13311 Control of Mechatronical Systems 6 6 I
MEMRM14206 Control of Mechatronical Systems 6 6 F
MEMRM14206 Control of Mechatronical Systems 6 6 I
MEMRM14203 Diagnostics in Mechatronics 6 6 F
MEMRM13204 Electronics of Mechatronic Systems 9 9 F
MEMRM14102 Experimental Research of Mechatronic Systems 10 10 F
MEMRM14105 Experimental Research of Mechatronic Systems 6 6 F
MEMRM13103 Master Graduation Thesis 1 3 3 F
MEMRM14103 Master Graduation Thesis 1 3 3 F
MEMRM13206 Master Graduation Thesis 2 3 3 F
MEMRM14201 Master Graduation Thesis 2 3 3 F
MEMRM13313 Master Graduation Thesis 3 3 3 F
MEMRM13414 Master Graduation Thesis 4 30 30 F
MEMRM14101 Mechanics of Mechatronic and Robotic Systems 10 10 F
MEMRM14104 Mechanics of Mechatronic and Robotic Systems 9 9 F
MEMRM13205 Mechanics of Mechatronical Systems 6 6 F
MEMRM13325 Mechanics of Mechatronical Systems 6 6 F
MEMRM13310 Modeling of Mechatronic Systems 9 9 F
MEMRM14205 Modeling of Mechatronic Systems 9 9 F
MEMRM13101 Reliability Theory 6 6 F
MEMRM14204 Sensors in Mechatronics 6 6 F
MEMRM14202 Smart materials in Mechatronics 6 6 F
ELECTRIC CAR "SMART"
 
Electric car „SMART“- Mechatronics and Robotics and Mechanical Engineering departments students knowledge and minds, those were transferred into the real engineering creation. It is the project, that started from clever and talented students idea to transfer all theoretical knowledge into the real product by modernizing  standard vehicle „SMART“. The car will use an alternative fuel. This creation represents possibilities of Mechanics faculty to transfer students’ ideas into the real body.
There was chosen a small town vehicle „SMART“ for the modernization. It was a gift from Jonas Jurjonas for students of Mechatronics and Robotics department in order, that they will be able to adapt theoretical knowledge in practise.
Personnel of Mechanical Engineering department were helping with this modernization process and as a result were made details for an electric car.
Steps of work:
  • Car receiving
  • Takedown of separate car units
  • Designing of new units and details
  • Production of required details and constructions
  • Assembly
  • Installation and coordination of mechatronic system
  • Experiment
Modernization of an electric car „SMART“: rear suspension was designed by Valdas Kulikajevas, brakes vacuum pump was designed by Gintaras Panavas, rear brakes combination was designed by Edmundas Reičiūnas, transmission was designed by Zhanyu Cui, device of mechatronic door opening was designed by Vytautas Giedraitis, KERS system was designed byAleksandr Lebedev.
ROBOTS
 
  • Hexapod twenty-one degrees of freedom autonomous robot (Mindaugas Rimidis). This robot designed for small tooling operations (in this case for boring operations). Robot has two sensors of infrared rays and one optical distance sensor. For this robot creation were used these components: CM-510 controller, AT mega processor and DYNAMIXEL servo-mechanisms.
  • Prototype of autonomous robot for warehouse service (Andrius Dzedzickis). It is small autonomous robot, which is controlled by programmable Arduin controller. It performs measurements of the distance to the nearest objects and begins to move to the side, where is most of available space. This robot can simulate the pickup of goods and transport them to another location. For obstacles detection robot are using 5 optical and 2 ultrasonic sensors. This prototype can be used for experiments of control algorithms and research of sensors features and optimal positions.

2014 year's final work annotation

 
2014 year's final work annotation
Studento vardas, pavardė Name Baigiamojo darbo tipas (B,M) Supervisor Annotation (in lithuanian) Annotation (foreign language)
Paulius Tamošauskas Modelling of Hysteresis Compensation of Precisious Positioning System with Deformable Elements M Audrius Čereška Anotacijos nėra Anotacijos nėra
Andrej Krupovič Research of Dynamic Processes of Mechatronic Water Stirrers Testing System M Robertas Urbanavičius Anotacijos nėra Anotacijos nėra
Dmitrij Komissarov Research of Small Size Linear Translation Devices with Stepper Motor M Robertas Urbanavičius Anotacijos nėra Anotacijos nėra
Mindaugas Rimidis Development and Research of Mechatronic Work Bench for Dynamic Characteristics Definition of Traumatic Human Skeleton Bone Fractures Applying Osteosintezis Methods M Robertas Urbanavičius Anotacijos nėra Anotacijos nėra
Artūras Šimkevičius Design and Research of Angular Scales Originals Forming Stand M Albinas Kasparaitis Anotacijos nėra Anotacijos nėra
Edvardas Stankūnas Reasearch of Dynamic Characteristics of Suspension of Electric SMART Car M Vytautas Bučinskas Anotacijos nėra Anotacijos nėra
Jurij Ryškevič Research of Dynamical Processes of Manipulation of the Scales M Albinas Kasparaitis Anotacijos nėra Anotacijos nėra
Arūnas Beinorius Research of Frost Formation on Heat Exchanger Plate of Recuperation System M Vytautas Bučinskas Anotacijos nėra Anotacijos nėra
Andrius Dzedzickis Development and Research of Dynamic Charakteristics of Mechatronic Remote Equipment Control System M Robertas Urbanavičius Anotacijos nėra Anotacijos nėra
Viktorija Vaickutė Research of Dynamic Processes of Angular Scales Originals Forming Machine M Albinas Kasparaitis Anotacijos nėra Anotacijos nėra
Vytautas Buzas Ventilation Ducts Inspecting and Cleaning Robot B Algis Daktariūnas Anotacijos nėra Anotacijos nėra
Artur Kazickij Modification of Sporting Bow by Integrating Mechatronic Force Control System B Robertas Urbanavičius Anotacijos nėra Anotacijos nėra
Artur Piščalov Design of Linear Positioner Device With Linear Synchronous Electric Motor B Vytautas Bučinskas Anotacijos nėra Anotacijos nėra
Ignas Marcinkevičius Program-controlled Tube Bending Machine B Vytautas Bučinskas Anotacijos nėra Anotacijos nėra
Marek Baranovski Modernization of Warm-house by Implementing Mechatronic Control System B Ernestas Šutinys Anotacijos nėra Anotacijos nėra
Robert Marcinkevič Modification of Mechatronic Components of Medical Valve 1922500 Assembly Machine B Robertas Urbanavičius Anotacijos nėra Anotacijos nėra
Donatas Gurauskis Design of Photoelectric Measurement System and Design of its Metrological Process B Mindaugas Jurevičius Anotacijos nėra Anotacijos nėra
Arnoldas Žalkauskas Modification of Baby Cradle Using Mechatronic Swinging System B Ernestas Šutinys Anotacijos nėra Anotacijos nėra
Martynas Davidonis Loose Materials Supply System Design B Vytautas Bučinskas Anotacijos nėra Anotacijos nėra
Martynas Mackevičius Remotelly Controled Snow Plowing Robot B Vytautas Bučinskas Anotacijos nėra Anotacijos nėra
Rolandas Žepnickas Workshop Shunting Device of Train Wagon B Vytautas Bučinskas Anotacijos nėra Anotacijos nėra
Gytis Raginskas Modernization of Passive Device for Lifting the Paraglides Using Mechatronic Thrust Control System B Robertas Urbanavičius Anotacijos nėra Anotacijos nėra
United Masters Degree Mechatronic Study Programme Preparation and Implementation VP1-2.2-ŠMM-07-K-02-075

Project term: 2012-11-29  -  2015-09-01
 
Project value: 2 356 908 Lt
 
 
Aim of the project: to ensure the training of most qualified mechatronics specialists by preparing and implementing  joint master's degree study program "Mechatronics". The project is based on the need and relevance of qualified mechatronicsspecialists need in Lithuania and other European countries. The studies will be in english language so it will be available for students from the European Union and third countries. The implementation of this project allows as to create high quality study program. New laboratory equipment will ensure the preparation of high cualification specialists for the Lithuanian and other countires markets. New world-class educational and methodical literature would provide a qualified studies by introducing students with newest world-class mechatronics achievements. New software would allow for students to prepare for their practical work. The possibility of lecturers mobility and international studies for students would provide a qualitative level of study. Graduates of this study program will be able to work in high-tech areas. 

Reception hours

Department's lecturers consultation hours
Lecturers consultation hours you can find here

2013/2014 m.m. Spring Semester Study Timetable

2013/2014 m.m. Spring Semester Study Timetable
Course Theoretical course starts Self-study week Theoretical course ends Egzams session  First repeated exams time Second repeated exams time Egzams in commission
Bachelor's degree studies
I 2014-02-03
2014-04-21
2014-04-27
2014-05-25
2014-05-26
2014-06-22
2014-06-23
2014-06-29
2014-08-25
2014-08-30
 
2014-09-08
2014-09-20
 
 
II
2014-05-05
2014-05-25
2014-05-26
2014-06-01
2014-08-25
2014-08-30
III
2014-05-05
2014-06-01
2014-06-02
2014-06-08
2014-08-25
2014-08-30
IV
2014-05-05
2014-05-18
2014-05-19
2014-05-24
2014-05-26
2014-05-31
2014-06-02
2014-06-07
Master's degree studies
I 2014-02-03
2014-04-21
2014-04-27
2014-05-25
2014-05-26
2014-06-22
2014-06-23
2014-06-29
2014-08-25
2014-08-30
2014-09-08
2014-09-20
II
Preparation of the final work
2014-02-03 - 2014-06-08
Defence of final work
2014-06-09 - 2014-06-22
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