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Supplementary material for ‘3D-Printing and Cylinder Buckling: Challenges and Opportunities’ from 3D-printing and cylinder buckling: challenges and opportunities

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Figshare2023-01-06 更新2026-04-28 收录
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https://figshare.com/articles/dataset/Supplementary_material_for_3D-Printing_and_Cylinder_Buckling_Challenges_and_Opportunities_from_3D-printing_and_cylinder_buckling_challenges_and_opportunities/21828765
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Cylinder buckling is notoriously sensitive to small geometric imperfections. This is an underlying motivation for the use of Knock-down factors in the design process, especially in circumstances in which minimum weight is a key design goal, an approach well-established at NASA, for example. Not only does this provide challenges in the practical design of this commonly occurring structural load-bearing configuration, but even in the carefully controlled laboratory setting. The recent development of 3D-printing (additive manufacturing) provides an appealing experimental platform for conducting relatively high-fidelity experiments on the buckling of cylinders. However, in addition to geometric precision, there are a number of shortcomings with this approach, and this article seeks to describe the challenges and opportunities associated with the use of 3D-printing in cylinder buckling in general, and probing the robustness of equilibrium configurations in particular.This article is part of the theme issue ‘Probing and dynamics of shock sensitive shells’.
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2023-01-06
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