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3D Design and 3D Printing Training in the Erasmus+ Program

As part of the Erasmus+ program, students from various countries received training in 3D design, animation, and 3D printing technologies. The training focused on how 3D design and printing can be used in modeling renewable energy sources and sustainability activities. Participants learned about technological advancements in these processes and aimed to develop projects contributing to a sustainable future.

News from Bilgemder

12.10.2024

The Erasmus+ program is an international educational mobility project that aims to equip students with skills and knowledge in various disciplines. In this context, a special training program on 3D design, 3D animation, and 3D printing was provided to students from different countries. This training process allowed participants to enhance their creative abilities and become more familiar with future technologies.

3D design plays a significant role in many sectors today, including sustainability and renewable energy. Through 3D design tools, prototypes of renewable energy projects can be modeled quickly and efficiently. Optimizing the designs of renewable energy sources such as solar panels and wind turbines and converting these designs into physical prototypes using 3D printers accelerates testing and development. This process provides both cost and time savings.

In sustainability initiatives, 3D design and 3D printing technologies promote the use of eco-friendly materials. 3D printing minimizes waste and enables the production of directly usable prototypes. This contributes to a circular economy and allows for the more efficient use of natural resources. Especially in renewable energy projects, 3D printing technology allows for the rapid implementation of innovative solutions needed for a sustainable world.

During the training, participants were taught not only 3D modeling and animation techniques but also the processes of printing these models with 3D printers. Students had the opportunity to design their own innovative projects and produce prototypes.

Through this experience, they not only developed their technical skills but also created projects that encourage thinking about sustainable energy sources.

In conclusion, the Erasmus+ program's training sessions highlighted the critical role of 3D design and printing technologies in renewable energy and sustainability. It provided students with practical experience and emphasized the importance of these technologies in building a sustainable future.