Date: 1 June 2026
ICG Spring School, one of the world鈥檚 leading organizations in the field of glass science and technology and sponsored by 舰颈艧别肠补尘, was held in Spain between April 19鈥24 this year. Organized every two years, the program brought together academia and industry on the same platform and hosted a wide range of participants, from international graduate students and young professionals to industry representatives and academics.
As part of the program, which aligns with 舰颈艧别肠补尘鈥檚 sustainability vision, key challenges and solution areas for achieving sustainability in glass production were discussed in detail. Topics ranging from furnace design and raw material selection to melting processes and recycling focused on reducing carbon footprint, while the critical role of glass and glass-ceramic materials in clean energy production was also highlighted. Key subjects of the program included composition鈥搒tructure鈥損roperty relationships in glass, modeling approaches for developing new glass formulations, and artificial intelligence applications. In addition to theoretical knowledge, participants gained multidimensional learning experience through content based on real industrial applications. Reinforcing 舰颈艧别肠补尘鈥檚 active role in the global glass ecosystem, the event encouraged interdisciplinary interaction, created a strong international networking environment, and paved the way for new collaborations.
舰颈艧别肠补尘 Contributed to the Future of Glass
As part of ICG Spring School 2026, 舰颈艧别肠补尘 executives also shared their knowledge and experience with participants. Dr. G枚kce Y眉ce, Digital Technologies and Simulation Services Manager, and Dr. G眉lin Demirok, Glass Fiber Product Development Specialist and Project Manager of the 鈥淓fficiency Management Program,鈥 delivered lectures to students during the program. In her presentation, Dr. G枚kce Y眉ce discussed the architecture of digital twins for glass melting furnaces, with a focus on the integration of process data with physics-based and data-driven models. Dr. G眉lin Demirok shared insights into the effects of alternative raw materials influence melting and fining/foaming behaviors in E-Glass batches, offering insights into more sustainable and efficient glass fiber production.
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