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ABAQUS Python Code for the Simulation of Topologically Interlocked Material Systems Based on Archimedean and Laves Tilings

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https://purr.purdue.edu/publications/3235/1
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<p>A set of six python scripts that parametrically generate ABAQUS models to simulate the response of topologically interlocked material systems based on the Archimedean and Laves tilings subjected to body force and displacement loading. These scripts were created to conduct research for a thesis in fulfillment of a Master of Science in Mechanical Engineering degree at Purdue University titled "Load Response of Topologically Interlocked Material Systems - Archimedean and Laves Tilings."</p> <p>There is one file for each of the [4<sup>4</sup>], [3.6.3.6], [3.4.6.4], [3<sup>6</sup>], (4.8<sup>2</sup>), and (4.6.12) tilings. Many parameters can be altered including specifications for the symmetry condition of the frame, the load type and direction, the block dimensions, and the number of blocks. Additionally, there are parameters for the material properties, mesh density, simulation settings, etc. A gap may also be added between blocks to enable 3D printing of the entire assembly.</p> <p>This work was supported by NSF Award 1662177.</p>
提供机构:
Purdue University Research Repository
创建时间:
2019-07-17
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