Public University of Navarre



Academic year: 2023/2024 | Previous academic years:  2022/2023  |  2021/2022  |  2020/2021  |  2019/2020 
Bachelor's degree in Industrial Engineering at the Universidad Pública de Navarra
Course code: 252104 Subject title: ENGINEERING GRAPHICS
Credits: 6 Type of subject: Basic Year: 1 Period: 1º S
Department: Ingeniería
Lecturers:
GOÑI GARATEA, MIKEL (Resp)   [Mentoring ] CARLOSENA REMIREZ, LAURA   [Mentoring ]

Partes de este texto:

 

Module/Subject matter

Module: Basic training

Subject matter: Engineering graphics

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Contents

Basic knowledge and skills on engineering graphics necessary for any engineer:
 

Geometric drawing

Projective geometry

Descriptive geometry

Technical Drawing

Topography and topographic drawing

Computer Aided Design




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General proficiencies

CG3: Knowledge of basic subjects, scientific and technological, that allows for continuous learning, along with the ability to adapt to new situations or changing environments.
CG4: The ability to resolve problems with initiative, decision-making, creativity, critical thinking and communicating and transmitting knowledge, skills and dexterity in the field of Industrial Engineering.

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Specific proficiencies

CFB5: Spatial vision and knowledge of graphic representation techniques, both by traditional methods of basic and descriptive geometry and through computer aided design tools.

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Learning outcomes

R1: To solve spatial problems and to conceive technical forms, as required by the creative activities of industrial projects and designs.

R2: To apply CAD tools in the process of industrial projecting and designing.
R3: To apply the engineering graphics techniques when confronted with other subject matters (both common or specific) of the study plan.
R4: To express and comunicate ideas and technical forms, either from one's own or from someone else, thorugh freehand sketches, technical drawings and models created with drawing equipment or CAD software.
R5: To know the concepts of Topography and Topographic Drawing.
R6: To produce technical graphic documentation with a professional view, in the frame of industrial projects and design activities.
R7: To produce technical graphic documentation with a professional view, in the frame of construction projects and design activities and topographic representation of terrain.

R8: To master a basic CAD tool.

 

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Methodology

Methodology - Activity In-class hours Self-study hours
A-1 Lecture 30  
A-2 Individual practice on medium size group 30  
A-3 Individual assignments   80
A-4 Analysis, sinthesis and self study   4
A-5 Exams and evaluation activities 6  
     
Total 66 84

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Languages

English.

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Evaluation

 

Learning outcome (Proficiency skills) Assessment activity Weight (%) Resit possibility (4) Minimum to weight between parts of each activity (5) Minimum to weight between activities (6)
R-1, R-2, R-3, R-4, R-5, R-6, R-7, R-8 (CG3, CG4, CB5) Practices for continuous assessment (1) (Reports of the experimental work) 20 Yes. Resit is possible by handing in corrected assignments or supplementary assignments following dates and instructions given by the lecturer _ 5 out of 10
R-1, R-2, R-3, R-4, R-5, R-6, R-7, R-8 (CG3, CG4, CB5) Summary exercices/practices (2) (Reports of the experimental work) 10 No. _ _
R-1, R-2, R-3, R-4, R-5, R-6, R-7, R-8 (CG3, CG4, CB5) Exam (3) (Tests: extended response and experimental work) 70 Yes. Resit exam. 4 out of 10 5 out of 10

 

(1) Practices for continuous assesment: Individual productions. Exercises, problems, and practical graphic cases of the different parts of the course. To be elaborated during and outside the class, throughout the semester.

(2) Summary exercises: Individual productions. Exercises, problems, and practical graphic cases of the different parts of the course. To be elaborated during the class on a fixed date and with limited time.

(3) Exam: Individual objective test. Exercises, problems and practical graphic cases, summary of the course¿s different parts. To be assessed during the written exam and resit exam.

(4) Resitting provides those students who have failed with a second chance to pass the course during that same semester, as long as they have participated in the different programmed assessment tasks.

(5) The evaluation of each assessment task (assignments and exams) will be divided in each part of course syllabus. If the minimum mark for weighting is not met in any of the assessed parts, the course's grade will be up to a maximum of 4.5 out of 10 (fail).

(6) If the minimum mark for weighting is not met in any of the assessed parts, the course's grade will be up to a maximum of 4.5 out of 10 (fail).

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Agenda

 

ENGINEERING GRAPHICS

Unit  01  Introduction to its scientific content.
Topic 01 Scientific content.
Topic 02 Geometry.
Topic 03 Technical Drawing and Standardisation.
Topic 04 Engineering design and project principles.

Unit 02   Introduction to its applied content.
Topic 05 Fundamentals of Technical Drawing. Technical Applications of Orthographic Projection.
Topic 06 Topographical surfaces. Technical Applications of Horizontal projection.
Topic 07 Pictorial Drawing Technical Applications of Pictorial Drawing.
Topic 08 Perspective projection Technical Applications of Perspective projection.

 

DESCRIPTIVE GEOMETRY. ORTHOGRAPHIC PROJECTION.

Unit  01  Representation of geometric elements.
Topic 01 Fundamentals of Orthographic Projection.
Topic 02 Representing the point.
Topic 03 Representing the line.
Topic 04 Representing the plane.

Unit 02   Relative positions of geometric elements.
Topic 05 Intersections.
Topic 06 Perpendicularity and parallelism.
Topic 07 Measuring distances.

Unit 03   Orthographic Projection Methods and their applications.
Topic 08 Methods, operations and representations.
Topic 09 Rebating.
Topic 10 Changing projection planes.
Topic 11 Rotations.
Topic 12 Angular relations. Measurement and construction.

Unit 04   Fundamentals in representing surfaces.
Topic 13 Surfaces. General concepts and designs.
Topic 14 Intersections between surfaces.

 

DESCRIPTIVE GEOMETRY. HORIZONTAL PROJECTION.

Unit  01  Representation of geometric elements.
Topic 01 Fundamentals of Horizontal Projection
Topic 02 Representing the point.
Topic 03 Representing the line.
Topic 04 Representing the plane.

Unit 02   Relative positions of geometric elements.
Topic 05 Intersections.
Topic 06 Perpendicularity and parallelism.
Topic 07 Measuring distances.

Unit 03   Horizontal Projection Methods and their applications.
Topic 08 Methods, operations and representations.
Topic 09 Rebating. Changing projection planes. Rotations.
Topic 10 Angular relations. Measurement and construction.

Unit 04   General Technical Applications of Horizontal projection.
Topic 11 Fundamentals of Topographic Drawing.
Topic 12 Fundamental technical designs of topographic surfaces.
Topic 13 Land grading
Topic 14 Drawing infrastructure¿s on terrain.
Topic 15 Representation of roofs.



TECHNICAL DRAWING.

Unit  01  Fundamentals of Technical Drawing.
Topic 01 Introduction to Standardisation.
Topic 02 Graphic Standardisation.

Unit 02   Standardised representations of industrial parts.
Topic 03 Standardised representations..
Topic 04 Fundamentals of standardised dimensioning.

Unit 03   Fundamentals of standardised representation in Industrial Drawing.
Topic 05 Introduction to drawing groups and parts´ lists.
Topic 06 Basic fundamentals of standardised representation of joint systems.
Topic 07 Basic fundamentals of standardised representation of mechanical elements and mechanisms.
Topic 08 Fundamentals of construction drawing and technical installations.

 


INTRODUCTION TO COMPUTER AIDED DESIGN.

Unit  01  Introduction to Computer Aided Design.
Topic 01 Computer Aided Design and Manufacturing fundamentals.
Topic 02 Graphic technique and CAD.
Topic 03 The physical support of CAD systems. Hardware.
Topic 04 The program support of CAD systems. Software.

Unit 02   Computer Aided Design Techniques.
Topic 05 Introduction to Computer Aided Design.
Topic 06 Creating drawings with CAD.
Topic 07 Creating models with CAD.
Topic 08 Organising and managing projects with CAD.

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Bibliography

Access the bibliography that your professor has requested from the Library.


Access the bibliography that your teacher has requested from the Library.

These texts are apart from other materials such as discussed subjects, resolved or unresolved exercises, collections of exercises or other resources that in any time during the course will be given to the student in the classroom via photocopies or on the courses virtual space in MiAulario.

Representation System References

Basic texts.

[Ro1]    RODRÍGUEZ DE ABAJO, F.J., Geometría descriptiva. Tomo I. Sistema Diédrico. Editorial Donostiarra S.A., San Sebastián, 2007 (25ª ed.). ISBN: 978-84-7063-353-9. Manual de referencia para el sistema diédrico.

[Ro2]    RODRÍGUEZ DE ABAJO, F.J., Geometría descriptiva. Tomo II. Sistema de Planos Acotados. Editorial Donostiarra S.A., San Sebastián, (12ª ed.). ISBN: 84-7063-182-9. Manual de referencia para el sistema de planos acotados.

[Co1]    COLLADO SÁNCHEZ-CAPUCHINO, V. Sistema de Planos Acotados: Sus aplicaciones en Ingeniería. Editorial Tébar Flores, S.L., 1988. ISBN: 84-7360-087-8. Manual de referencia para el sistema de planos acotados.

[Ro3]    RODRÍGUEZ DE ABAJO, F.J., Geometría descriptiva. Tomo III. Sistema Axonométrico. Editorial Donostiarra S.A., San Sebastián, 1991 (6ª ed.). ISBN: 84-7063-170-5. Manual de referencia para el sistema axonométrico isométrico.

[Ro4]    RODRÍGUEZ DE ABAJO, F.J. y REVILLA BLANCO, A., Geometría Descriptiva. Tomo IV. Sistema de Perspectiva Caballera. Editorial Donostiarra S.A. 1991 (5ª ed.), ISBN: 84-7063-061-X. Manual de referencia para perspectiva caballera.

Complementary texts:

[Iz1]      IZQUIERDO ASENSI, F., Geometría descriptiva. 1997. Editor: Izquierdo Ruiz de la Peña, F. J., Madrid, 1997 (23ª ed.). ISBN:  84-922109-1-5. Esta obra comprende en un nivel básico todos los Sistemas de Representación y sus aplicaciones, pero desarrolla especialmente el Sistema Diédrico.

[Ta]      TAIBO FERNÁNDEZ, A., Geometría descriptiva y sus aplicaciones. Tomo I. Geometría descriptiva y sus aplicaciones. Tomo II. Editorial Tébar Flores, S.L., Tomo I: 2007 (2ª ed.). ISBN 13: 978-84-7360-273-0. Tomo II: 2007 (2ª ed.). ISBN 13: 978-84-7360-274-7. De estos dos últimos textos existen muchas reimpresiones en ediciones anteriores a la fecha anotada. El primer tomo explica todos los Sistemas de Representación en simultaneidad. El segundo tomo se centra en el estudio de curvas y superficies, empleando el Sistema Diédrico.

[Co2]    COLLADO SÁNCHEZ-CAPUCHINO, V. Dibujo técnico: expresión gráfica de la ingeniería, Editorial Tébar Flores, S.L., 1999 (1ª ed. 1ª imp.). ISBN: 84-930380-6-7. Texto que puede complementar el Sistema de Planos Acotados.

Workbooks (excercises and practice). Beginners.

[Al1]      ALVAREZ BENGOA, V., Prácticas de dibujo técnico. 4. Perspectiva (axonométrica y caballera). Editorial Donostiarra S.A., 1997 (10ª ed.). ISBN: 84-7063-124-1. Colección de ejercicios sencillos, con una introducción a los fundamentos mínimos de la perspectiva axonométrica y caballera.

[Go1]    GONZALO GONZALO, J., Prácticas de dibujo técnico. 7. Iniciación al Sistema Diédrico. Editorial Donostiarra S.A., 2007 (1ª ed. 13ª imp.). ISBN: 84-7063-138-1. Texto de ejercicios elementales de iniciación, con una introducción a los fundamentos y operaciones del sistema.

[Me]      MENDEZ LOPEZ, C., Prácticas de dibujo técnico. 11. Sistema de planos acotados. Editorial Donostiarra S.A., 1997 (3ª ed.). ISBN: 84-7063-158-6. Síntesis de los conceptos y operaciones fundamentales del sistema, con ejercicios sencillos.

Workbooks (excercises and practice). Advanced.

[Iz2]      IZQUIERDO ASENSI, F., Ejercicios de Geometría descriptiva I (Sistema Diédrico). Madrid, 1994 (13ª ed.). ISBN: 84-237-0801-2. Colección de problemas sobre cónicas, y en Sistema Diédrico (básicos y avanzados), enunciados, comentados y resueltos.

[Iz3]      IZQUIERDO ASENSI, F., Ejercicios de Geometría descriptiva II (Acotado y Axonométrico). Madrid, 1994 (13ª ed.). ISBN: 84-237-0800-4. Colección de problemas en el Sistema de Planos Acotados, y sobre superficies topográficas, así como de construcciones avanzadas en perspectiva axonométrica isométrica y caballera.

 

 

Geometric Drawing and Technical Drawing References

Basic texts.

[Ro5]    RODRÍGUEZ DE ABAJO, F.J. y ÁLVAREZ BENGOA, V., Curso de Dibujo Geométrico y de Croquización. Editorial Donostiarra, S.A., San Sebastián, 2005 (15ª ed.). ISBN: 978-84-7063-173-X. Manual de referencia para las partes de Dibujo Geométrico y Dibujo Técnico de la asignatura.

[Ro6]    RODRÍGUEZ DE ABAJO, F.J. y GARRALAGA ASTIBIA, R., Normalización del Dibujo Industrial. Editorial Donostiarra S.A., 1999 (1ª ed. 2ª imp.). ISBN: 84-7063-181-0. Recopilación y síntesis de las normas de UNE más utilizadas en Dibujo Técnico y Dibujo Industrial.

[Une]    Manual de normas UNE. Dibujo técnico. CD-ROM. Ed. AENOR, 2009 (4ª Ed.), ISBN: 978-84-8143-626-6. Recopilación de normas UNE sobre Dibujo Técnico.

Complementary texts: Geometric Drawing.

[Cr]       CORBELLA, BARRIOS, D., Técnicas de representación geométrica con fundamentos de concepción espacial. Autor editor. Madrid. 1993. ISBN: 978-84-604-7495-1. Visión completa de la geometría plana y del espacio aplicada a los trazados técnicos.

[Go2]    GONZALO GONZALO, J., Dibujo Geométrico. Arquitectura-Ingeniería. Editorial Donostiarra S.A., 2001. ISBN: 978-84-7063-287-7. Puede servir para profundizar en la relación entre Geometría Proyectiva y Dibujo Geométrico.

Complementary texts: Technical Drawing, Beginners.

[Go3]    GONZALO GONZALO, J., Prácticas de dibujo técnico. 1. Croquización. Editorial Donostiarra S.A., 2006, (2ª ed. 2ª imp.). ISBN: 84-7063-305-8. Cuaderno para iniciarse en el dibujo a mano alzada.

[Go4]    GONZALO GONZALO, J., Prácticas de dibujo técnico. 2. Cortes, secciones y roturas. Editorial Donostiarra S.A., 2008 (1ª ed. 13ª imp.). ISBN: 84-7063-316-3. Cuaderno que resume el concepto de corte y sus clases, con ejercicios para croquizar.

[Re1]    REVILLA BLANCO, A., Prácticas de dibujo técnico. 6. Vistas y visualización de piezas. Editorial Donostiarra S.A., 2005 (1ª ed. 14ª imp.). ISBN: 84-7063-132-2. Cuaderno con ejercicios básicos de obtención de las vistas ortogonales de piezas dadas en perspectiva.

[Re2]    REVILLA BLANCO, A., Prácticas de dibujo técnico. 3. Acotación. Editorial Donostiarra S.A., 2003 (1ª ed. 11ª imp.). ISBN: 84-7063-128-4. Cuaderno que resume la norma de acotación, con ejercicios.

Complementary texts: Technical Drawing, Advanced.

[Pr]       PRECIADO, C. y MORALES, F.J., Normalización del Dibujo Técnico. Editorial Donostiarra S.A., San Sebastián, 2004. ISBN: 978-84-7063-309-6. Libro de consulta para avanzar hacia la asignatura de Dibujo Industrial.

[Iso]      ISO STANDARDS HANDBOOK - TECHNICAL DRAWINGS (2 volumes). Volume 1: Technical drawings in general (part 1). 2002. ISBN 92-67-10370-9. Volume 2: Mechanical engineering drawings; construction drawings; drawing equipment (parts 2, 3, 4). 2002. ISBN 92-67-10370-7. Recopilación de normas ISO sobre Dibujo Técnico.

CAD.

[Re]      REYES RODRIGUEZ, A.M., Manual Imprescindible de Autocad 2018. Ediciones Anaya Multimedia (Anaya S.A.), 2017. ISBN: 978-84-415-3938-9. Dada la amplia oferta editorial de manuales sobre programas informáticos, que caducan conforme avanzan las versiones de los mismos, puede emplearse como texto de consulta, este libro, o cualquier otro similar.

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Location

Arrosadia campus:
-Lectures in the Aulario building in the assigned classroom.
-Computer practice in the computer lab, ground floor at Los Tejos building

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