This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
Arlet J.L. (2021), Innovative Carpentry and Hybrid Joints in Contemporary Wooden Architecture, “Arts”, 10(3), 64.Search in Google Scholar
Bianconi F., Filippucci M. (eds.), (2019), Digital wood design, Springer International Publishing, Cham.Search in Google Scholar
Branco J.M., Descamps T. (2015), Analysis and strengthening of carpentry joints, “Construction and Building Materials”, 97, 34–47.Search in Google Scholar
Eversmann P. (2017), Robotic fabrication techniques for material of unknown geometry, in: Humanizing Digital Reality: Design Modelling Symposium, Paris, eds. K. De Rycke et al., Springer, Singapore, 311– 322.Search in Google Scholar
Eversmann P., Gramazio F., Kohler M. (2017), Robotic prefabrication of timber structures: towards automated large-scale spatial assembly, “Construction Robotics”, 1(1–4), 49–60.Search in Google Scholar
Herwig O. (2023), Parametric Pavilion from the University of British Columbia, DETAIL, https://www.detail.de/de_en/parametrischer-pavilion-der-university-of-british-columbia [access: 1.07.2024].Search in Google Scholar
Januszkiewicz K. (2013), Strukturalna „skóra” form swobodnych semi-monocoque i monocoque, “Archi-volta”, 4, 42-47.Search in Google Scholar
Jasieńko J., Nowak T., Karolak A. (2014), Historyczne złącza ciesielskie, “Wiadomości Konserwatorskie. Journal of Heritage Conservation”, 40, 58–82.Search in Google Scholar
Knippers J., Menges A. (2020), Landesgartenschau exhibition hall, in: J. Knippers, A. Menges, Architecture Research Building, Birkhäuser, Basel, 90–99.Search in Google Scholar
Li J., Knippers J. (2015), Segmental timber plate shell for the Landesgartenschau exhibition hall in Schwäbisch Gmünd – the application of finger joints in plate structures, “International Journal of Space Structures”, 30(2), 123–139.Search in Google Scholar
Major M., Różycka J. (2013), Łączniki stalowe w konstrukcjach drewnianych, “Zeszyty Naukowe Politechniki Częstochowskiej. Seria Budownictwo”, 19(1), 107–114.Search in Google Scholar
Mairs J. (2017), ETH Zurich students create robot-built pavilion with a skin of wooden shingles, Dezeen, https://www.dezeen.com/2017/02/07/eth-zurich-gramazio-kohler-research-lab-pavilion-robotic-construction-wood-shingles-students/ [access: 1.07.2024].Search in Google Scholar
Menges A., Schwinn T., Krieg O.D. (2015), Landesgartenschau Exhibition Hall, in: Interlocking Digital and Material Cultures, ed. S. Pfeiffer, Spurbuch Verlag, Baunach, 55–71.Search in Google Scholar
Menges A., Schwinn T., Krieg O.D. (eds.), (2016), Advancing wood architecture. A computational approach, Routledge, London–New York.Search in Google Scholar
Meyboom A.L. (2022), Robot Made 2022: Millefeuille Pavilion, University of British Columbia, https://blogs.ubc.ca/meyboom/robot-made-millefeuille/ [access: 1.07.2024].Search in Google Scholar
Parametric Architecture (2022), The Millefeuille Pavilion, A Robotically Fabricated Temporary Structure, https://parametric-architecture.com/the-millefeuille-pavilion-a-robotically-fabricated-temporary-structure/ [access: 2.11.2022].Search in Google Scholar
PuuProffa (2021a), Tenon and mortise, https://puuproffa.fi/arc-of-joinery/tenon-andmortise/?lang=en [access: 10.10.2023].Search in Google Scholar
PuuProffa (2021b), Wedge joint, https://puuproffa.fi/arc-of-joinery/wedge-joint/?lang=en [access: 10.10.2023].Search in Google Scholar
Schwinn T., Krieg O.D., Menges A. (2014), Behavioral strategies: synthesizing design computation and robotic fabrication of lightweight timber plate structures, in: Proceedings of the 34th Annual Conference of the Association for Computer Aided Design in Architecture (ACADIA), Los Angeles, 177–188.Search in Google Scholar
Schwinn T., Menges A. (2015), Fabrication agency: Landesgartenschau exhibition hall, “Architectural Design”, 85, 92–99.Search in Google Scholar
Schwinn T. (2016), Landesgartenschau Exhibition Hall, in: Advancing wood architecture, Taylor & Francis, Abingdon, UK, 111–124.Search in Google Scholar
Stehling H., Scheurer F., Usai S. (2020), Large-Scale Free-Form Timber Grid Shell: Digital Planning of the new Swatch Headquarters in Biel, Switzerland, Fabricate, UCL Press, 210–217.Search in Google Scholar
Szewczyk J. (2019a), Drewno we współczesnej architekturze. Część 1. Wstęp do architektury drew-nianej, “Builder”, 265(8), 28–32.Search in Google Scholar
Szewczyk J. (2019b), Drewno we współczesnej architekturze. Część 2. Budownictwo szybkościowe z drewna, “Builder”, 266(9), 32–36.Search in Google Scholar
Szewczyk J. (2019c), Drewno we współczesnej architekturze. Część 3. „Plyscrapers”, “Builder”, 268(11), 32–35.Search in Google Scholar
Weinand Y. (2016), Advanced timber structures: architectural designs and digital dimensioning, Birkhäuser, Basel.Search in Google Scholar
Woodsman J. (2022), Small House Framing Connectors, Pin-Up Houses, https://www.pinuphouses.com/small-house-framing-connectors/ [access: 1.07.2024].Search in Google Scholar
Woodworking Archive (2023), Finger Joint Boxes, https://www.woodworkingarchive.biz/joining-wood/info-iqj.html [access: 10.10.2023].Search in Google Scholar
Zwerger K. (2011), Wood and Wood Joints. Building Traditions of Europe, Japan and China, Birkhäuser, Basel.Search in Google Scholar