Design of Anti-Parallelogram Loop Assemblies

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Date

Authors

Gür, Şebnem
Korkmaz, Koray
Kiper, Gökhan

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Open Access Color

BRONZE

Green Open Access

Yes

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8

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3

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No
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Abstract

Scissor mechanisms are frequently used for deployable structures and many studies have been conducted on the subject. Most of the studies consider scissor units as modules in the design process. An alternative approach is to utilize loops as the modules for design. In this paper, the design alternatives of single degree-of-freedom planar linkages comprising anti-parallelogram loops using the loop assembly method is presented. First, scissor mechanisms are reviewed. Next, the types of four-bar loops and the resulting linkages in the literature are introduced and those which are yet to be explored, anti-parallelogram being one of them, are identified. Then the loop assembly method and the examples in the literature are reviewed. As a method to form as many alternatives as possible, symmetry operations are proposed. Suitable frieze symmetry groups utilized for obtaining the assemblies are explained and the anti-parallelogram loop patterns are derived. Next, the single degree-of-freedom linkages are obtained from the loop assemblies. Finally, a selection of the resulting linkages with novel properties are presented. This study shows that loop assemblies are efficient in systematic type synthesis of scissor linkages, some types of which could not be foreseen by using units as modules.

Description

Keywords

Anti-parallelogram loop, Deployable structures, Loop assembly method, Scissor mechanisms, Deployable structures, Scissor mechanisms, deployable structures, anti-parallelogram loop, scissor mechanisms, Anti-parallelogram loop, loop assembly method, Loop assembly method

Fields of Science

0203 mechanical engineering, 02 engineering and technology, 0201 civil engineering

Citation

Gür, Ş., Korkmaz, K., and Kiper, G. (2019). Design of anti-parallelogram loop assemblies. Journal of the International Association for Shell and Spatial Structures, 60(3), 232-240. doi:10.20898/j.iass.2019.201.006

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1

Volume

60

Issue

3

Start Page

232

End Page

240
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Scopus : 5

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Mendeley Readers : 15

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5

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Web of Science™ Citations

6

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Page Views

6176

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Downloads

959

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