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21 to 30 of 82 Results
Tabular Data - 356.9 KB - 3 Variables, 14333 Observations - UNF:6:tfw84a0ftQ6oeYlttSqSOg==
Experimental data for the axial compression test of specimen P4. Load is given in Newton (N), displacements in millimeter (mm) and time in seconds (s). These data correspond to the load-machine-displacement recordings.
Tabular Data - 214.6 KB - 3 Variables, 7969 Observations - UNF:6:0LMDsUq1RZyaEP992/ix4w==
Experimental data for the axial compression test of specimen P5_01. Load is given in Newton (N), displacements in millimeter (mm) and time in seconds (s). These data correspond to the load-machine-displacement recordings.
Tabular Data - 161.1 KB - 3 Variables, 6056 Observations - UNF:6:CYSoW4jXNrQ7/IEGYuq+uA==
Experimental data for the axial compression test of specimen P5_02. Load is given in Newton (N), displacements in millimeter (mm) and time in seconds (s). These data correspond to the load-machine-displacement recordings.
Tabular Data - 80.3 KB - 3 Variables, 4493 Observations - UNF:6:C93pL+Cm2kQhkzhHkZLqRA==
Experimental data for the axial compression test of specimen P6. Load is given in Newton (N), displacements in millimeter (mm) and time in seconds (s). These data correspond to the load-machine-displacement recordings.
Makefile Script - 1.7 KB - MD5: 6a760bb0cb9968d5e15535bdff28d9af
Makefile defining rules to generate figures and run analyses.
Makefile Script - 466 B - MD5: 204d9ffe73a1f72c2ea72357690a70cf
Makefile defining rules to generate figures and results.
Python Source Code - 368 B - MD5: 67bd5e48e3516c1fd71273e713a813b0
Python file used to retrieve the maximum capacities of all specimens.
Python Source Code - 9.1 KB - MD5: 56ca293df78cd439114fbdfb18b2d9f8
Abaqus parametric finite element model of the column-to-column connection considering the uniformly distributed load on the free surface of the column.
JSON - 267 B - MD5: b7ab0e289249f5da4d719f714e179810
Parameters specifying the geometry of the studied connection.
JSON - 257 B - MD5: 733b8f3f37d5832587c2e9586bcf779c
Parameters defining the geometry of the studied connection.
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