Szczegóły publikacji

Opis bibliograficzny

Nonlocal elasticity in shape memory alloys modeled using peridynamics for solving dynamic problems / Adam MARTOWICZ, Jakub BRYŁA, Wiesław J. STASZEWSKI, Massimo Ruzzene, Tadeusz UHL // Nonlinear Dynamics ; ISSN 0924-090X. — 2019 — vol. 97 iss. 3 spec. iss. Nonlinear systems in engineering, control and life sciences, s. 1911–1935. — Bibliogr. s. 1933–1935, Abstr. — Publikacja dostępna online od: 2019-04-23

Autorzy (5)

Słowa kluczowe

structural dynamicsgas foil bearingsuperelasticityperidynamicsnon local modelshape memory alloy

Dane bibliometryczne

ID BaDAP123584
Data dodania do BaDAP2019-11-06
Tekst źródłowyURL
DOI10.1007/s11071-019-04943-5
Rok publikacji2019
Typ publikacjiartykuł w czasopiśmie
Otwarty dostęptak
Creative Commons
Czasopismo/seriaNonlinear Dynamics

Abstract

The work is primarily devoted to the peridynamic model elaborated for a solid body made of shape memory alloys (SMAs). The superelasticity effect is taken into consideration as well as its practical applications. Hence, the numerical simulations, making use of the phenomena of superelasticity, are carried out for the model of an SMA wire to investigate mechanical energy dissipation. The nonlocal peridynamic model of an SMA component is derived based on the theory proposed by Lagoudas—introduced to describe the phenomenon of solid phase transitions that occur in SMA. The results of the conducted experimental work are applied by the authors to validate the elaborated model. Moreover, an alternative verification of the peridynamic model is also performed using other numerical tool—the finite element code based on the analytical approach for modeling SMA, developed by Auricchio. The hysteretic character of the stress–strain relationship for the modeled SMA component, which undergoes the superelasticity effect, is shown using quasi-static peridynamic simulations. Finally, the capability of energy dissipation when cyclic loading for the elaborated nonlocal model is investigated via dynamic simulations. The numerical results obtained for the studied case are discussed to show the applicability of the presented modeling approach in the field of structural dynamics. A particular focus is placed on the available structural stiffness control functionality in mechanical systems equipped with SMA and efficiency of energy dissipation in SMA-based dampers, which may be effectively applied to suppress mechanical vibrations. Both mentioned application areas for SMA are of the authors’ special concern in the designing process of the nonlinear supporting structure in gas foil bearings, which is also discussed in the final part of the paper to highlight the practical aspects of the conducted research. © 2019, The Author(s).

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Superelasticity in shape memory alloys via peridynamics / Adam MARTOWICZ, Jakub BRYŁA, Wiesław J. STASZEWISKI, Massimo Ruzzene // W: Proceedings of the 6th. European Conference on Computational Mechanics (solids, structures and coupled problems) ECCM 6 ; 7th. European Conference on Computational Fluid Dynamics ECFD 7 [Dokument elektroniczny] : Glasgow, Scotland, UK, June 11–15, 2018 / ed. by Roger Owen, [et al.]. — Wersja do Windows. — Dane tekstowe. — Barcelona : International Center for Numerical Methods in Engineerin (CIMNE), [2020]. — e-ISBN: 978-84-947311-6-7. — S. 2981–2991. — Wymagania systemowe: Adobe Reader. — Tryb dostępu: https://drive.google.com/open?id=12ZTQP0ZDOf5gnDYWLGehC2H5BfE... [2020-03-28]. — Bibliogr. s. 2990–2991, Abstr.
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#132833Data dodania: 8.3.2021
Phase transformation in shape memory alloys: a numerical approach for thermomechanical modeling via peridynamics / Adam MARTOWICZ, Sławomir KANTOR, Łukasz PIECZONKA, Jakub BRYŁA, Jakub ROEMER // Meccanica ; ISSN 0025-6455. — 2021 — vol. 56 iss. 4, spec. iss.: Modelling and numerical/experimental investigation of dynamical phenomena in mechanical systems / eds. Jan Awrejcewicz, Marco Amabili, Airton Nabarette, s. 841–854. — Bibliogr. s. 853-854, Abstr. — Publikacja dostępna online od: 2021-01-06