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1,191 to 1,200 of 1,261 Results
EXC IntCDC Research Project 19 'Co-Design Methods for Developing Distributed Cooperative Multi-Robot Systems for Construction' logo
Jul 5, 2022
RP19-1: Leveraging the building material as part of the robotic kinematic system for parallel construction. RP19-2: Co-design methods for developing distributed cooperative multi-robot systems for construction.
Adobe PDF - 63.3 KB - MD5: fab0a77dff2b51e37f8412644edce141
EXC IntCDC Research Project 12 'Computational Co-Design Framework for Fibre Composite Building Systems'(University of Stuttgart, Max Planck Institute for Intelligent Systems)
EXC IntCDC Research Project 12 'Computational Co-Design Framework for Fibre Composite Building Systems' logo
Jun 14, 2022
RP12-1: Computational co-design for fibre composite building systems including visual analytics and simulation interfaces. RP12-2: Computational co-design framework for fibre composite building systems.
EXC IntCDC Research Project 10 'Co-Design from Architectural, Social and Computational Perspectives'(University of Stuttgart, Max Planck Institute for Intelligent Systems)
EXC IntCDC Research Project 10 'Co-Design from Architectural, Social and Computational Perspectives' logo
Jun 13, 2022
RP10-1: Co-design from architectural, historical and social science perspectives. RP10-2: Co-design from architectural, social and computational perspectives: methods for the integrative exploration of design spaces for future timber buildings within existing urban contexts.
EXC IntCDC Research Project 4 'Cyber-Physical Wood Fabrication Platform'(University of Stuttgart, Max Planck Institute for Intelligent Systems)
EXC IntCDC Research Project 4 'Cyber-Physical Wood Fabrication Platform' logo
Jun 13, 2022
RP4-1: Cyber-physical fabrication platform for wood building system utilizing human-machine collaborations including immersive analytics for augmented reality. RP4-2: Cyber‐physical fabrication platform: fluid fabrication – extending the adaptivity of island-based fabrication and the design-to-fabrication reciprocity through multi-unit collaboratio...
Apr 12, 2022 - IntCDC
Tapia Camú, Cristóbal; Claus, Marian, 2021, "Experimental data for: A finger-joint based edge connection for the weak direction of CLT plates", https://doi.org/10.18419/DARUS-1344, DaRUS, V2, UNF:6:3YMGPmWE9BG0uaF+T4A8HQ== [fileUNF]
This repository contains the experimental data collected for the newly developed plate-to-plate connection during the Master's Thesis of Marian Claus. The data corresponds to the two different connection geometries, tested under two different loading conditions: (i) pure bending and (ii) shear bending conditions. For all the experiments, global and...
Tabular Data - 127.7 KB - 22 Variables, 356 Observations - UNF:6:Pnb0KQjIP7752u3uC9OVew==
Shear/Moment configuration, connection A, first loading cycle. Force units: [kN]; Displacements: [mm]; Strains: [--]. The force given corresponds to a single loading piston.
Tabular Data - 116.2 KB - 22 Variables, 323 Observations - UNF:6:lsFmoHhY2NjcjIu2BG08lQ==
Shear/Moment configuration, connection A, second loading cycle. Force units: [kN]; Displacements: [mm]; Strains: [--]. The force given corresponds to a single loading piston.
Tabular Data - 289.3 KB - 22 Variables, 812 Observations - UNF:6:PJDg+/XHtIGoA9eESv5R5g==
Shear/Moment configuration, connection A, third loading cycle. Force units: [kN]; Displacements: [mm]; Strains: [--]. The force given corresponds to a single loading piston.
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