Guías Docentes Electrónicas
1. General information
Course:
MECHANISMS AND DYNAMICS OF MACHINERY
Code:
56720
Type:
CORE COURSE
ECTS credits:
6
Degree:
403 - UNDERGRADUATE DEGREE PROGRAMME IN AEROSPACE ENGINEERING
Academic year:
2023-24
Center:
303 - E.DE INGENIERÍA INDUSTRIAL Y AEROESPOACIAL DE TOLEDO
Group(s):
40 
Year:
3
Duration:
First semester
Main language:
Spanish
Second language:
English
Use of additional languages:
English Friendly:
N
Web site:
Bilingual:
N
Lecturer: ANTONIO GONZALEZ RODRIGUEZ - Group(s): 40 
Building/Office
Department
Phone number
Email
Office hours
Sabatini/Buhardilla
MECÁNICA ADA. E ING. PROYECTOS
925268800 Ext. 3804
antonio.gonzalez@uclm.es

2. Pre-Requisites
Not established
3. Justification in the curriculum, relation to other subjects and to the profession
Not established
4. Degree competences achieved in this course
Course competences
Code Description
CA01 Ability to carry out bibliographic searches, use databases and other sources of information for its application in tasks related to Technical Aeronautical Engineering.
CA02 Ability to efficiently design experimentation procedures, interpret the data obtained and specify valid conclusions in the field of Aeronautical Technical Engineering.
CA03 Ability to autonomously select and carry out the appropriate experimental procedure, operating the equipment correctly, in the analysis of phenomena within the scope of Engineering.
CA04 Ability to select advanced tools and techniques and their application in the field of Aeronautical Technical Engineering.
CA05 Knowledge of the methods, techniques and tools as well as their limitations in the application for the resolution of problems typical of Aeronautical Technical Engineering.
CA06 Ability to identify and assess the effects of any solution in the field of Aeronautical Technical Engineering within a broad and global context and the ability to interrelate the solution to an engineering problem with other variables beyond the technological field, which must be considered.
CB02 Apply their knowledge to their job or vocation in a professional manner and show that they have the competences to construct and justify arguments and solve problems within their subject area.
CB03 Be able to gather and process relevant information (usually within their subject area) to give opinions, including reflections on relevant social, scientific or ethical issues.
CB04 Transmit information, ideas, problems and solutions for both specialist and non-specialist audiences.
CB05 Have developed the necessary learning abilities to carry on studying autonomously
CE02 Understanding and command of the basic concepts of the general laws of mechanics, thermodynamics, fields and waves and electromagnetism and their application to solve engineering problems.
CE05 Capacity for spatial vision and knowledge of graphic representation techniques, both by traditional methods of metric geometry and descriptive geometry, and through computer-aided design applications.
CG01 Capacity for the design, development and management in the field of aeronautical engineering that have as their object, in accordance with the knowledge acquired as established in section 5 of order CIN/308/2009, aerospace vehicles, propulsion systems aerospace, aerospace materials, airport infrastructures, air navigation infrastructures and any space, traffic and air transport management system.
CG02 Planning, drafting, direction and management of projects, calculation and manufacturing in the field of aeronautical engineering that have as their object, in accordance with the knowledge acquired as established in section 5 of order CIN/308/2009, aerospace vehicles , aerospace propulsion systems, aerospace materials, airport infrastructures, air navigation infrastructures and any space, traffic and air transport management system.
CG03 Installation, operation and maintenance in the field of aeronautical engineering that have as their object, in accordance with the knowledge acquired as established in section 5 of order CIN/308/2009, aerospace vehicles, aerospace propulsion systems, materials aerospace, airport infrastructure, air navigation infrastructure and any space, traffic and air transport management system.
CG05 Ability to carry out activities of projection, technical direction, expert opinion, report writing, opinions, and technical advice on tasks related to Aeronautical Technical Engineering, exercise of functions and genuine aerospace technical positions.
CG06 Ability to participate in flight test programs to collect data on takeoff distances, climb rates, stall rates, maneuverability, and landing capabilities.
CG07 Ability to analyze and assess the social and environmental impact of technical solutions.
CG08 Knowledge, understanding and ability to apply the necessary legislation in the exercise of the profession of Aeronautical Technical Engineer.
CT01 Knowledge of technical vocabulary of subjects related to aerospace engineering, in a second foreign language.
CT02 Knowledge and application of Information and Communication Technologies (ICT).
CT03 Correct use of oral and written communication.
CT04 Knowledge of ethical commitment and professional ethics.
CT05 Knowledge of the principles of management skills and teamwork.
5. Objectives or Learning Outcomes
Course learning outcomes
Description
Design, project and analyze mechanical systems.
Knowledge of the basics of mechanical design.
Knowledge of the fundamentals of the kinematic and dynamic analysis of mechanisms
Additional outcomes
Description
6. Units / Contents
  • Unit 1:
    • Unit 1.1:
    • Unit 1.2:
    • Unit 1.3:
  • Unit 2:
    • Unit 2.1:
    • Unit 2.2:
    • Unit 2.3:
    • Unit 2.4:
    • Unit 2.5:
  • Unit 3:
    • Unit 3.1:
    • Unit 3.2:
    • Unit 3.3:
    • Unit 3.4:
    • Unit 3.5:
  • Unit 4:
    • Unit 4.1:
    • Unit 4.2:
    • Unit 4.3:
  • Unit 5:
    • Unit 5.1:
    • Unit 5.2:
    • Unit 5.3:
  • Unit 6:
    • Unit 6.1:
    • Unit 6.2:
    • Unit 6.3:
  • Unit 7:
    • Unit 7.1:
    • Unit 7.2:
    • Unit 7.3:
  • Unit 8:
    • Unit 8.1:
    • Unit 8.2:
    • Unit 8.3:
7. Activities, Units/Modules and Methodology
Training Activity Methodology Related Competences (only degrees before RD 822/2021) ECTS Hours As Com Description
Class Attendance (theory) [ON-SITE] Lectures CA01 CA05 CB03 CB04 CB05 CE02 CE05 CG01 CG02 CG03 CG05 CG06 CG07 CG08 CT01 CT02 CT03 0.9 22.5 N N
Problem solving and/or case studies [ON-SITE] Problem solving and exercises CA01 CA05 CA06 CB03 CB04 CB05 CE02 CE05 CG01 CG02 CG03 CG05 CG06 CG07 CG08 CT01 CT02 CT03 0.9 22.5 N N
Computer room practice [ON-SITE] Practical or hands-on activities CA01 CA02 CA03 CA04 CA05 CA06 CB03 CB04 CB05 CE02 CE05 CG01 CG02 CG03 CG05 CG06 CG07 CG08 CT01 CT02 CT03 0.06 1.5 N N
Laboratory practice or sessions [ON-SITE] Practical or hands-on activities CA01 CA02 CA03 CA04 CA05 CA06 CB03 CB04 CB05 CE02 CE05 CG01 CG02 CG03 CG05 CG06 CG07 CG08 CT01 CT02 CT03 0.26 6.5 N N
Group tutoring sessions [ON-SITE] Problem solving and exercises CA01 CA05 CA06 CB03 CB04 CB05 CE02 CE05 CG01 CG02 CG03 CG05 CG06 CG07 CG08 CT01 CT02 CT03 0.16 4 N N
Writing of reports or projects [OFF-SITE] Group Work CA01 CA02 CA03 CA04 CA05 CA06 CB02 CB03 CB04 CB05 CE02 CE05 CG01 CG02 CG03 CG05 CG06 CG07 CG08 CT01 CT02 CT03 CT04 CT05 0.5 12.5 Y N
Study and Exam Preparation [OFF-SITE] Self-study CA01 CA04 CA05 CA06 CB02 CB03 CB04 CB05 CE02 CE05 CG01 CG02 CG03 CG05 CG06 CG07 CG08 CT01 CT02 3.1 77.5 N N
Final test [ON-SITE] Assessment tests CA06 CB02 CB03 CB04 CB05 CE02 CE05 CG01 CG02 CG03 CG05 CG06 CG07 CG08 CT01 CT03 CT04 0.12 3 Y N
Total: 6 150
Total credits of in-class work: 2.4 Total class time hours: 60
Total credits of out of class work: 3.6 Total hours of out of class work: 90

As: Assessable training activity
Com: Training activity of compulsory overcoming (It will be essential to overcome both continuous and non-continuous assessment).

8. Evaluation criteria and Grading System
Evaluation System Continuous assessment Non-continuous evaluation * Description
Final test 70.00% 100.00%
Projects 30.00% 0.00%
Total: 100.00% 100.00%  
According to art. 4 of the UCLM Student Evaluation Regulations, it must be provided to students who cannot regularly attend face-to-face training activities the passing of the subject, having the right (art. 12.2) to be globally graded, in 2 annual calls per subject , an ordinary and an extraordinary one (evaluating 100% of the competences).

Evaluation criteria for the final exam:
  • Continuous assessment:
    Evaluation criteria not defined
  • Non-continuous evaluation:
    Evaluation criteria not defined

Specifications for the resit/retake exam:
Evaluation criteria not defined
Specifications for the second resit / retake exam:
Evaluation criteria not defined
9. Assignments, course calendar and important dates
Not related to the syllabus/contents
Hours hours
Class Attendance (theory) [PRESENCIAL][Lectures] 2.5
Problem solving and/or case studies [PRESENCIAL][Problem solving and exercises] 2.5
Computer room practice [PRESENCIAL][Practical or hands-on activities] 1.5
Laboratory practice or sessions [PRESENCIAL][Practical or hands-on activities] 6.5
Group tutoring sessions [PRESENCIAL][Problem solving and exercises] 4
Study and Exam Preparation [AUTÓNOMA][Self-study] 12.5
Final test [PRESENCIAL][Assessment tests] 3

Unit 1 (de 8):
Activities Hours
Class Attendance (theory) [PRESENCIAL][Lectures] 1
Writing of reports or projects [AUTÓNOMA][Group Work] 1
Group 40:
Initial date: 07-09-2020 End date: 13-09-2020

Unit 2 (de 8):
Activities Hours
Class Attendance (theory) [PRESENCIAL][Lectures] 3
Problem solving and/or case studies [PRESENCIAL][Problem solving and exercises] 4
Writing of reports or projects [AUTÓNOMA][Group Work] 16
Group 40:
Initial date: 13-07-2020 End date: 26-07-2020

Unit 3 (de 8):
Activities Hours
Class Attendance (theory) [PRESENCIAL][Lectures] 3
Problem solving and/or case studies [PRESENCIAL][Problem solving and exercises] 4
Writing of reports or projects [AUTÓNOMA][Group Work] 16
Group 40:
Initial date: 28-09-2020 End date: 11-10-2020

Unit 4 (de 8):
Activities Hours
Class Attendance (theory) [PRESENCIAL][Lectures] 2
Problem solving and/or case studies [PRESENCIAL][Problem solving and exercises] 1
Writing of reports or projects [AUTÓNOMA][Group Work] 8
Group 40:
Initial date: 12-10-2020 End date: 19-10-2020

Unit 5 (de 8):
Activities Hours
Class Attendance (theory) [PRESENCIAL][Lectures] 2
Problem solving and/or case studies [PRESENCIAL][Problem solving and exercises] 2
Writing of reports or projects [AUTÓNOMA][Group Work] 9
Group 40:
Initial date: 19-10-2020 End date: 26-10-2020

Unit 6 (de 8):
Activities Hours
Class Attendance (theory) [PRESENCIAL][Lectures] 3
Problem solving and/or case studies [PRESENCIAL][Problem solving and exercises] 3
Writing of reports or projects [AUTÓNOMA][Group Work] 12
Group 40:
Initial date: 26-10-2020 End date: 09-11-2020

Unit 7 (de 8):
Activities Hours
Class Attendance (theory) [PRESENCIAL][Lectures] 4
Problem solving and/or case studies [PRESENCIAL][Problem solving and exercises] 4
Writing of reports or projects [AUTÓNOMA][Group Work] 11.5
Group 40:
Initial date: 09-11-2020 End date: 23-11-2020

Unit 8 (de 8):
Activities Hours
Class Attendance (theory) [PRESENCIAL][Lectures] 2
Problem solving and/or case studies [PRESENCIAL][Problem solving and exercises] 2
Writing of reports or projects [AUTÓNOMA][Group Work] 4
Group 40:
Initial date: 30-11-2020 End date: 07-12-2020

Global activity
Activities hours
10. Bibliography and Sources
Author(s) Title Book/Journal Citv Publishing house ISBN Year Description Link Catálogo biblioteca
A.G. Eardman, G. N. Sandor Mechanism Design Prentice Hall 1997  
Domínguez Abascal Teoría de Máquinas y Mecanismos Universidad de Sevilla 2016  
Hervás, Rodríguez Cuadernos de Mecánica. Cinemática y tensores Universidad de Sevilla 1989  
J. Shigley Teoría de Máquinas y Mecanismos McGraw-Hill/Interamericana 1988  
R.L. Norton Diseño de Maquinaria McGraw-Hill/Interamericana 1995  



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