{"id":null,"code":"KTEK0063","name":{"valueFi":"Advanced Additive Manufacturing","valueEn":"Advanced Additive Manufacturing","valueSv":"Advanced Additive Manufacturing"},"credits":5.0,"minCredits":5,"maxCredits":5,"tags":[{"code":"AV","title":{"valueFi":"Myös avoimena yliopisto-opetuksena","valueEn":"Open University Studies","valueSv":"Open University Studies"}},{"code":"KEKE","title":{"valueFi":"Kestävä kehitys","valueEn":"Sustainable development","valueSv":"Sustainable development"}},{"code":"opinfi-teema-new_technologies","title":{"valueFi":"Opinfi teema - Uudet teknologiat","valueEn":"Opinfi theme - New technologies","valueSv":"Opinfi tema - Nya teknologier"}}],"createdAt":1790534697909,"contentList":[{"title":{"valueFi":"Osaamistavoitteet","valueEn":"Learning outcomes","valueSv":""},"content":{"valueFi":"After having passed the course, the student will have advanced knowledge of current technologies of additive manufacturing (AM, 3D printing) and their role in manufacturing industries, know fundamentally product design in AM, be able to comprehensively compare different AM processes with conventional manufacturing and select suitable processes for different applications. Student will also learn fundamental phenomena behind AM technologies, be able to understand simulation and optimization tools used in AM, know AM material properties, understand deeply post processing of AM and also gather deep knowledge of process control of AM. Students are also familiar with cost evaluation, business aspects and market potential of AM. Students will learn how industrial cases are executed and which factor affect them.","valueEn":"After having passed the course, the student will have advanced knowledge of current technologies of additive manufacturing (AM, 3D printing) and their role in manufacturing industries, know fundamentally product design in AM, be able to comprehensively compare different AM processes with conventional manufacturing and select suitable processes for different applications. Student will also learn fundamental phenomena behind AM technologies, be able to understand simulation and optimization tools used in AM, know AM material properties, understand deeply post processing of AM and also gather deep knowledge of process control of AM. Students are also familiar with cost evaluation, business aspects and market potential of AM. Students will learn how industrial cases are executed and which factor affect them.","valueSv":"After having passed the course, the student will have advanced knowledge of current technologies of additive manufacturing (AM, 3D printing) and their role in manufacturing industries, know fundamentally product design in AM, be able to comprehensively compare different AM processes with conventional manufacturing and select suitable processes for different applications. Student will also learn fundamental phenomena behind AM technologies, be able to understand simulation and optimization tools used in AM, know AM material properties, understand deeply post processing of AM and also gather deep knowledge of process control of AM. Students are also familiar with cost evaluation, business aspects and market potential of AM. Students will learn how industrial cases are executed and which factor affect them."}},{"title":{"valueFi":"Sisältö","valueEn":"Content","valueSv":""},"content":{"valueFi":"Advanced procedures, processes, materials, software and equipment of additive manufacturing (AM, 3D printing). Advanced approach to product design in AM, AM material properties and post processing. Fundamentals of phenomena occurring in AM processes, simulation and optimization of them and process control of AM. Many industrial cases with large background of them. Cost estimation, business potential and markets in AM. Advanced future trends and potential of additive manufacturing. Course has also invited lecturers from industry to provide comprehensive industrial approach to AM and its applications.\r\n\r\nThe student and the teacher plan the content of the project work jointly. Project work deals with fundamental issue or problem related to AM. The project work topic can be given by teacher, provided by student or can also relate to any practical area in industry. After the project plan is accepted, the students do the project according to the plan. Any major deviations from the plan are discussed with the stakeholders. The project work is documented in a final project report with the results is presented in the end of the project work. Project report will be checked and accepted / rejected by teacher.","valueEn":"Advanced procedures, processes, materials, software and equipment of additive manufacturing (AM, 3D printing). Advanced approach to product design in AM, AM material properties and post processing. Fundamentals of phenomena occurring in AM processes, simulation and optimization of them and process control of AM. Many industrial cases with large background of them. Cost estimation, business potential and markets in AM. Advanced future trends and potential of additive manufacturing. Course has also invited lecturers from industry to provide comprehensive industrial approach to AM and its applications.\r\n\r\nThe student and the teacher plan the content of the project work jointly. Project work deals with fundamental issue or problem related to AM. The project work topic can be given by teacher, provided by student or can also relate to any practical area in industry. After the project plan is accepted, the students do the project according to the plan. Any major deviations from the plan are discussed with the stakeholders. The project work is documented in a final project report with the results is presented in the end of the project work. Project report will be checked and accepted / rejected by teacher.","valueSv":"Advanced procedures, processes, materials, software and equipment of additive manufacturing (AM, 3D printing). Advanced approach to product design in AM, AM material properties and post processing. Fundamentals of phenomena occurring in AM processes, simulation and optimization of them and process control of AM. Many industrial cases with large background of them. Cost estimation, business potential and markets in AM. Advanced future trends and potential of additive manufacturing. Course has also invited lecturers from industry to provide comprehensive industrial approach to AM and its applications.\r\n\r\nThe student and the teacher plan the content of the project work jointly. Project work deals with fundamental issue or problem related to AM. The project work topic can be given by teacher, provided by student or can also relate to any practical area in industry. After the project plan is accepted, the students do the project according to the plan. Any major deviations from the plan are discussed with the stakeholders. The project work is documented in a final project report with the results is presented in the end of the project work. Project report will be checked and accepted / rejected by teacher."}},{"title":{"valueFi":"Suoritustavat","valueEn":"Study methods","valueSv":""},"content":{"valueFi":"Evaluation tests, project plan, project work, final project report. Primary platform for course is Moodle.\r\n\r\nLectures 28 h, periods 1-2, Tutorials 19 h, Individual & group work 88 h. Total workload 135 h.","valueEn":"Evaluation tests, project plan, project work, final project report. Primary platform for course is Moodle.\r\n\r\nLectures 28 h, periods 1-2, Tutorials 19 h, Individual & group work 88 h. Total workload 135 h.","valueSv":""}},{"title":{"valueFi":"Toteutustavat","valueEn":"Course unit methods","valueSv":""},"content":{"valueFi":"Evaluation tests, project plan, project work, final project report. Primary platform for course is Moodle.\r\n\r\nLectures 28 h, periods 1-2, Tutorials 19 h, Individual & group work 88 h. Total workload 135 h.","valueEn":"Evaluation tests, project plan, project work, final project report. Primary platform for course is Moodle.\r\n\r\nLectures 28 h, periods 1-2, Tutorials 19 h, Individual & group work 88 h. Total workload 135 h.","valueSv":""}},{"title":{"valueFi":"Oppimateriaalit","valueEn":"Learning material","valueSv":""},"content":{"valueFi":"Evaluation tests, project plan, project work, final project report.\r\n\r\nMaterial provided by lecturers in Moodle. Relevant literature to the project work will also be provided in Moodle.","valueEn":"Evaluation tests, project plan, project work, final project report.\r\n\r\nMaterial provided by lecturers in Moodle. Relevant literature to the project work will also be provided in Moodle.","valueSv":""}},{"title":{"valueFi":"Lisätiedot","valueEn":"Further information","valueSv":""},"content":{"valueFi":"This course has 15 places for open university students.","valueEn":"This course has 15 places for open university students.","valueSv":""}},{"title":{"valueFi":"Kurssikirjallisuus","valueEn":"Literature","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Esitietovaatimukset","valueEn":"Qualifications","valueSv":""},"content":{"valueFi":"Intermediate knowledge level of engineering sciences","valueEn":"Intermediate knowledge level of engineering sciences","valueSv":""}},{"title":{"valueFi":"Arviointiasteikko","valueEn":"Assessment scale","valueSv":""},"content":{"valueFi":"0-5","valueEn":"0-5","valueSv":"0-5"}},{"title":{"valueFi":"Arviointikriteerit","valueEn":"Assessment criteria","valueSv":""},"content":{"valueFi":"Written project report 40 %, seminar 10 %, evaluation of learning (by three digital evaluations) 50 %.","valueEn":"Written project report 40 %, seminar 10 %, evaluation of learning (by three digital evaluations) 50 %.","valueSv":""}},{"title":{"valueFi":"Arviointikriteerit 2","valueEn":"Assessment criteria 2","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Arviointikriteerit 3","valueEn":"Assessment criteria 3","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Arviointikriteerit 4","valueEn":"Assessment criteria 4","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Kielet","valueEn":"Languages","valueSv":""},"content":{"valueFi":"englanti","valueEn":"English","valueSv":"engelska"}},{"title":{"valueFi":"Taso","valueEn":"Level","valueSv":""},"content":{"valueFi":"Syventävät opinnot","valueEn":"Advanced Studies","valueSv":""}},{"title":{"valueFi":"Oppiaine","valueEn":"Subject","valueSv":""},"content":{"valueFi":"Konetekniikka","valueEn":"Mechanical Engineering","valueSv":"Mechanical Engineering"}},{"title":{"valueFi":"Vastuuhenkilöt","valueEn":"Person in charge","valueSv":""},"content":{"valueFi":"Heidi Piili","valueEn":"Heidi Piili","valueSv":"Heidi Piili"}},{"title":{"valueFi":"Luokittelu","valueEn":"Classification","valueSv":""},"content":{"valueFi":"Myös avoimena yliopisto-opetuksena, Kestävä kehitys, Opinfi teema - Uudet teknologiat","valueEn":"Open University Studies, Sustainable development, Opinfi theme - New technologies","valueSv":"Open University Studies, Sustainable development, Opinfi tema - Nya teknologier"}},{"title":{"valueFi":"Linkit","valueEn":"Links","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}}]}