Graphic Expression
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- Ricardo Villalobos Zúñiga
- hace 7 años
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1 Coordinating unit: Teaching unit: Academic year: Degree: ECTS credits: ESEIAAT - Terrassa School of Industrial, Aerospace and Audiovisual Engineering EGE - Department of Engineering Presentation BACHELOR'S DEGREE IN AEROSPACE TECHNOLOGY ENGINEERING (Syllabus 2010). (Teaching unit Compulsory) BACHELOR'S DEGREE IN AEROSPACE VEHICLE ENGINEERING (Syllabus 2010). (Teaching unit Compulsory) 7,5 Teaching languages: Spanish Teaching staff Coordinator: VICENTE HERNANDEZ ABAD Others: FRANCISCO HERNANDEZ ABAD - VICENTE HERNANDEZ -JOAN PIQUÉ - ANTONI GARCIA - ORIOL PARDO Degree competences to which the subject contributes Specific: 1. A capacity for spatial vision and an understanding of graphic representation techniques, using the traditional methods of metric and descriptive geometry and computer-aided design applications Teaching methodology The themes will be developed through appropriate classroom lectures (essentially benefits ICT) labs in classrooms equipped with specific software and hardware related. In the theory sessions students receive the knowledge and guidelines for course development, and will make available the information needed to consolidate and reinforce this knowledge. During the course will consider appropriate laboratory practice the concepts explained in theory, taking into account the cumulative nature of such knowledge and absorptive capacity of the subject. Learning objectives of the subject To provide students the knowledge to develop properly the graphics of their future projects as well as to develop their vision and spatial intelligence. To show the advantages of visual communication in the design and transmission of ideas and procedures. To provide students with the ability to define and manipulate spatial forms through a support plane. Enable them to conceive the real three-dimensional space. Get the essential characteristics of the shape and mechanical elements. Determine shape and size from any piece or any real mechanism. Perform any graphical project, so that it can be leaded to any official group, considering current law. 1 / 7
2 Study load Total learning time: 187h 30m Hours large group: 33h 17.60% Hours small group: 42h 22.40% Self study: 112h 30m 60.00% 2 / 7
3 Content 1. Fundamentals of computer-aided design Learning time: 7h 30m Self study : 4h 30m (ENG) 1.- Eines de CAD. Interfícies gràfiques. 2.- Sistemes de generació de cossos i superfícies. 3.- Treball en el pla i en l'espai. (ENG) Totes les pràctiques estan vinculades a aquest bloc de continguts, que es desenvolupen transversalment al llarg del curs. Activitat 1,activitat 2, activitat 3, activitat 4, activitat 5, activitat 6, activitat 7 2. Plane geometry Learning time: 17h 30m Theory classes: 4h Self study : 10h 30m (ENG) 1.- Mètodes convencionals de resolució de problemes geomètrics. 2.- El mètode de les interseccions de llocs geomètrics en el pla. 3.- Extensió a l'espai del mètode dels llocs geomètrics. (ENG) Classe d'explicació teòrica i pràctica en laboratori. Activitat 1 3 / 7
4 3. Solid geometry Learning time: 47h 30m Theory classes: 7h Laboratory classes: 12h Self study : 28h 30m (ENG) 1.- Principals sistemes de representació i de projecció. 2.- Desenvolupament de l'eina en els diferents sistemes. 3.- Moviments. 4.- Superfícies d'aplicació tècnica. Generació i Interseccions. 5.- Volums i cossos. Generació i Interseccions. (ENG) Classe d'explicació teòrica i pràctica en laboratori. Activitat 2, activitat 3, activitat 4, activitat 5 4. Standarized representation of technical drawings Learning time: 47h 30m Theory classes: 10h Laboratory classes: 9h Self study : 28h 30m (ENG) 1.- Sistemes de representació europeu i americà. 2.- Talls, seccions, vistes interrompudes, detalls i elements complementaris. 3.- Sistemes de dimensionament d'objectes. Acotació funcional. 4.- Control d'errors en la mesura. Toleràncies dimensionals. 5.- Controls de forma, posició, orientació i oscil lació. Toleràncies geomètriques. (ENG) Classe d'explicació teòrica i pràctica en laboratori. Activitat 6, activitat 8 5. Presentation of projects Learning time: 67h 30m Theory classes: 12h Laboratory classes: 15h Self study : 40h 30m 4 / 7
5 Planning of activities (ENG) ACTIVITAT 1: LLOCS GEOMÈTRICS I INTRODUCCIÓ AL CONEIXEMENT DE LES EINES (CONTINGUT 2) Hours: 20h Self study: 12h Laboratory classes: 6h (ENG) ACTIVITAT 2: GENERACIÓ DE COSSOS A PARTIR DE PROJECCIONS (CONTINGUT 3) Hours: 20h Self study: 12h Laboratory classes: 6h (ENG) ACTIVITAT 3: OPERATIVITAT INSTRUMENTAL DELS SISTEMES DE REPRESENTACIÓ (CONTINGUT 3) (ENG) ACTIVITAT 4: INTERSECCICONS I TANGÈNCIES ENTRE COSSOS (CONTINGUT 3) (ENG) ACTIVITAT 5: SUPERFÍCIES I COSSOS (CONTINGUT 3) (ENG) ACTIVITAT 6: REPRESENTACIÓ NORMALITZADA D'OBJECTES (CONTINGUT 4) Hours: 50h Self study: 30h Theory classes: 8h Laboratory classes: 12h (ENG) ACTIVITAT 7: PROJECTE DISSENY MECÀNISME (CONTINGUT 5) Hours: 37h 30m Self study: 22h 30m Theory classes: 6h Laboratory classes: 9h 5 / 7
6 (ENG) ACTIVITAT 8: PROVA 1R PARCIAL (CONTINGUTS 1,2,3,4) Hours: 10h Self study: 6h Theory classes: 4h (ENG) ACTIVITAT 9: RECUPERACIÓ PROVA 1R PARCIAL (CONTINGUT 1,2,3,4) I PROVA FINAL (CONTINGUT 3,4,5) Theory classes: 5h Qualification system The final evaluation is obtained, considering that all scores are above 10, as follows: Nf = Na * 0,2 + Nb * 0,2 + Nc * 0,2 + Nd * 0,4 Where: Nf: final grade Na: 1st partial test 20% (with possibility of recovery in the final test) * Nb: practical 20% Nc: project 20% Nd: Final test 40% * If the qualification of the final exam is greater than or equal to 5 and that of the partial exam is less than 5, the qualification of the partial exam is converted into a 5 Regulations for carrying out activities - At the end of each session, students must send the work through the network to a restricted access area where it will be posted until the completion of the course. - The same work must be completed and printed on paper to be delivered two weeks after the proposal. - The project will be delivered on the date specified, properly bound in DIN A3 format and its contents will be: Presentation. Assembly drawing. Parts List. Exploded Drawings. 6 / 7
7 Bibliography Basic: Hernández Abad, F. Lugares geométricos: su aplicación a tangencias. Barcelona: Edicions UPC, ISBN Hernández Abad, F [et al.]. Ingeniería gráfica: introducción a la normalización. 3a ed. Terrassa: ETSEIAT. Departamento de Expresión Gráfica en la Ingeniería, ISBN Torrella Font, A.M. [et al.]. Exercicis d'expressió gràfica: geometria plana-llocs geomètrics, sistema axonomètric, sistema dièdric. Barcelona: Unicopi, ISBN González García, V. Sistemas de representación, vol. 1, Sistema diédrico. Valladolid: Texgraf, ISBN Rendón Gómez, A. Geometría paso a paso. Madrid: Tébar, ISBN Félez, Jesús. Dibujo industrial. Madrid: Síntesis, ISBN Ramos Barbero, B. [et al.]. Dibujo técnico. Madrid: AENOR, ISBN Complementary: Bertran i Guasp, J. Geometría descriptiva, vol. 1, Sistema diédrico directo: fundamentos y ejercicios. San Sebastián: Donostiarra, ISBN Asociación Española de Normalización y Certificación. Dibujo técnico. 3a ed. Madrid: AENOR, ISBN Varis. Técnicas de expresión gráfica. Barcelona: Edebé, Equipo Tècnico Edebé. Delineación industrial: teoría de técnicas de expresión gráfica. Barcelona: Don Bosco: Bruño, ISBN Others resources: 7 / 7
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