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1,461 to 1,470 of 1,643 Results
Apr 20, 2023 - Publications
Tapia Camú, Cristóbal, 2023, "Replication Data for: Holes in glulam - Orientation and design of internal reinforcements", https://doi.org/10.18419/DARUS-3440, DaRUS, V1
This repository contains the finite element models for Abaqus used to generate the results shown in the paper. The models are written in Python and were tested with Abaqus v2016. Three models are provided: Model of a glulam beam with a circular hole without reinforcement Model of a glulam beam with a circular hole with internal reinforcements (inte...
Markdown Text - 2.0 KB - MD5: e35f95ce26c17df7833631b3c3a9a82d
Instructions to install required python libraries for Abaqus v2016. Versions of Abaqus newer than v2022 include these libraries in the default installation, thus, there is no need to install them manually.
Python Source Code - 55.0 KB - MD5: 94971fa4175e607f25fd61b4bed3e91d
Finite element model of a glulam beam with a hole reinforced without reinforcement.
Python Source Code - 95.7 KB - MD5: 6dfd4e8edbfc08c6e4fbd4b72aa6255c
Finite element model of a glulam beam with a hole reinforced with internal inclined dowel-type reinforcements.
Python Source Code - 98.4 KB - MD5: a6b08c2a451517b4642117af039307b4
Finite element model of a glulam beam with a hole reinforced with internal inclined dowel-type reinforcements. A discrete crack is added.
Nov 7, 2022 - Institut für Strahlwerkzeuge
Hagenlocher, Christian, 2022, "Python implementation of heat accumulation equations for additive manufacturing", https://doi.org/10.18419/DARUS-2609, DaRUS, V1
This is a python implementation of the heat accumulation equations, which describe the increase of the residual temperature in additive manufacturing. The Derivation of the equations is described in the related paper given below. If you run the script in the console, it creates two text-files and four plots in .png format. Process parameter and mat...
Python Source Code - 10.9 KB - MD5: 8b81775ff2d408c217d897d3fc4384ae
Oct 12, 2022 - Institute for Structural Mechanics
Krake, Tim; von Scheven, Malte, 2022, "Matlab Implementation of Efficient Updates of Redundancy Matrices", https://doi.org/10.18419/DARUS-2870, DaRUS, V1
This is a Demo for the manuscript 'Efficient Update of Redundancy Matrices for Truss and Frame Structures' that demonstrates the speedup and accuracy of the proposed update formulas. The computation is done in single-precision. Please open and run the main file. Further information is contained in this file.
MATLAB Source Code - 4.3 KB - MD5: 1b3b70f42e43c508e7ed7300083c0fe6
MATLAB Source Code - 2.1 KB - MD5: ed091981b374757a35d100b80d75d23f
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