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Architect and civil engineer, Prof. Dr. Yves Weinand is one of the most recognised researchers in the field of contemporary wood construction. Founder of the Bureau d'Etude Weinand, he has, since 1996, designed and worked on many emblematic wooden buildings, such as the Saint Loup Chapel, the new Vaudois Parliament or, more recently, the Timber Pavilion of Vidy in Lausanne. His fundamental research questions the technical and static possibilities of wooden materials. The interdisciplinary exploration carried out at the EPFL's Laboratory for Timber Constructions (Ibois), of which he is director, concerns wood in all its aspects, from round wood to manufactured wood. The recent research carried out at Ibois on free structures with wood-wood connections (without screw nor glue) has been the subject of several technological transfers, and stands as tangible proof of new possibilities for wood construction. Yves Weinand is currently working on a large-scale project for a hall for the head office of a joinery in Luxembourg, consisting of a succession of arches with spans of 22.5 to 53.7m, entirely assembled in wood ).
Through new innovative approaches, the ambition of his research is to develop a new generation of renewable and ecological wooden construction.
He is regularly invited to present his work at international symposia on timber construction.
Through new innovative approaches, the ambition of his research is to develop a new generation of renewable and ecological wooden construction.
He is regularly invited to present his work at international symposia on timber construction.
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Construction Roboticsno. 1 (2024): 1-28
APPLIED SCIENCES-BASELno. 7 (2024): 3011
JOURNAL OF ADHESION SCIENCE AND TECHNOLOGYpp.1-20, (2023)
Construction Roboticsno. 2 (2023): 159-175
Construction Roboticsno. 3-4 (2022): 293-304
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CAADRIA proceedings Proceedings of the 27th Conference on Computer Aided Architectural Design Research in Asia (CAADRIA) [Volume 2] (2022)
CAADRIA proceedings Proceedings of the 27th Conference on Computer Aided Architectural Design Research in Asia (CAADRIA) [Volume 2] (2022)
Design of Integrally-Attached Timber Plate Structurespp.109-174, (2021)
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