Semi-automated braiding of complex, spatially branched FRP-structures. Composite Structures, (276):114551, ELSEVIER SCI LTD, Nov 15, 2021. [PUMA: 2021 FRP-structures ITKE Semi-automated architecture automation biomimetics born braiding branched branching fibre.reinforced frp gresser jonas kannenberg knippers melnyk menges möhl node palstic preform spatially]
Semi-automated braiding of complex, spatially branched FRP-structures. Composite Structures, (276):114551, ELSEVIER SCI LTD, Nov 15, 2021. [PUMA: frp ITKE born preform knippers melnyk 2021 branching node palstic jonas spatially from:petraheim branched menges braiding fibre.reinforced Semi-automated gresser biomimetics automation kannenberg FRP-structures möhl architecture]
Semi-automated braiding of complex, spatially branched FRP-structures. Composite Structures, (276):114551, 2021. [PUMA: automation braiding branching fiber-reinforced frp myown node peer plastic preform] URL
How can branched building structures be optimized via analyzing plant branchings? Functional morphology, biomechanics and Finite Element (FE) simulation of Araliaceae ramifications. In Kesel, and Zehren (Eds.), Bionik: Patente aus der Natur. Tagungsbeiträge 8. Bionik-Kongress Bremen, 40-48, Bremen, Germany, 2017. [PUMA: 2017 Araliaceae analyzing biomechanics biomimetic branched branching building bunk element fe finite from:petraheim functional itke jonas knippers masselter morphology optimized plant ramfication seitz simulation speck structure]
Towards branched supporting structures out of concrete-FRP composites inspired from natural branchings. Proceedings of the IASS Annual Symposium 2018, Boston, USA, 16-19 July 2018. [PUMA: 2018 architecture biomimetic born branched branching composite concrete concrete-frp from:petraheim frp gresser inspired itke jonas knippers möhl natural structure supporting]
Towards branched supporting structures out of concrete-FRP composites inspired from natural branchings. Proceedings of the IASS Annual Symposium 2018, Boston, USA, 16-19 July 2018. [PUMA: 2018 architecture biomimetic born branched branching composite concrete concrete-frp frp gresser inspired itke jonas knippers möhl natural structure supporting]
How can branched building structures be optimized via analyzing plant branchings? Functional morphology, biomechanics and Finite Element (FE) simulation of Araliaceae ramifications. In Kesel, and Zehren (Eds.), Bionik: Patente aus der Natur. Tagungsbeiträge 8. Bionik-Kongress Bremen, 40-48, Bremen, Germany, 2017. [PUMA: 2017 Araliaceae analyzing biomechanics biomimetic branched branching building bunk element fe finite functional itke knippers masselter morphology optimized plant ramfication seitzjonas simulation speck structure]