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On topology optimization of large deformation contact-aided shape morphing compliant mechanisms

Abstrakt

A topology optimization approach for designing large deformation contact-aided shape morphing compliant mechanisms is presented. Such mechanisms can be used in varying operating conditions. Design domains are described by regular hexagonal elements. Negative circular masks are employed to perform dual task, i.e., to decide material states of each element and also, to generate rigid contact surfaces. Each mask is characterized by five design variables, which are mutated by a zero-order based hill-climbing optimizer. Geometric and material nonlinearities are considered. Continuity in normals to boundaries of the candidate designs is ensured using a boundary resolution and smoothing scheme. Nonlinear mechanical equilibrium equations are solved using the Newton–Raphson method. An updated Lagrange approach in association with segment-to-segment contact method is employed for the contact formulation. Both mutual and self contact modes are permitted. Efficacy of the approach is demonstrated by designing four contact-aided shape morphing compliant mechanisms for different desired curves. Performance of the deformed profiles is verified using a commercial software. The effect of frictional contact surface on the actual profile is also studied.

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Wersja publikacji
Accepted albo Published Version
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Creative Commons: CC-BY-NC-ND otwiera się w nowej karcie

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Informacje szczegółowe

Kategoria:
Publikacja w czasopiśmie
Typ:
artykuły w czasopismach
Opublikowano w:
MECHANISM AND MACHINE THEORY nr 156,
ISSN: 0094-114X
Język:
angielski
Rok wydania:
2021
Opis bibliograficzny:
Kumar P., Sauer R., Saxena A.: On topology optimization of large deformation contact-aided shape morphing compliant mechanisms// MECHANISM AND MACHINE THEORY -Vol. 156, (2021), s.104135-
DOI:
Cyfrowy identyfikator dokumentu elektronicznego (otwiera się w nowej karcie) 10.1016/j.mechmachtheory.2020.104135
Weryfikacja:
Politechnika Gdańska

wyświetlono 133 razy

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