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Search results for: HYPERELASTIC MICRO/NANOBEAM

  • Zespół Katedry Wytrzymałości Materiałów

    Katedra zajmuje się zagadnieniami związanymi z wytrzymałością elementów konstrukcji, ich teorią oraz analizą, jak również do myśli przewodnich należy zaliczyć materiałowe badania doświadczalne oraz prace nad technologią betonu. Współpracujemy z przemysłem z branż budowlanych i okołobudowlanych, wykorzystując wypracowane doświadczenie i wiedzę z zakresu materiałów konstrukcyjnych i budowlanych.

  • Katedra Geotechniki, Geologii i Budownictwa Morskiego

    * badania teoretyczne i doświadczalne oraz analizy numeryczne w Mechanice Gruntów; * badania laboratoryjne i polowe gruntów; * metody wzmacniania podłoża gruntowego; * “zieloną geotechnikę” z zastosowaniem ekologicznych materiałów, technologii i zagospodarowaniem produktów ubocznych; * badania teoretyczne, doświadczalne oraz zagadnienia praktyczne fundamentowania w odniesieniu do fundamentów bezpośrednich i głębokich, tunelowania,...

  • Katedra Technologii Polimerów

    W Katedrze Technologii Polimerów realizowane są prace badawczo-wdrożeniowe, wykonywane ekspertyzy i analizy oraz prowadzone są szkolenia w zakresie technologii polimerów oraz przetwórstwa i recyklingu tworzyw sztucznych. Oferujemy nowe technologie i przeprowadzamy modyfikacje technologii już istniejących.

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Search results for: HYPERELASTIC MICRO/NANOBEAM

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Search results for: HYPERELASTIC MICRO/NANOBEAM

  • Nonlinear Free and Forced Vibrations of a Hyperelastic Micro/Nanobeam Considering Strain Stiffening Effect

    Publication

    - Nanomaterials - Year 2021

    In recent years, the static and dynamic response of micro/nanobeams made of hyperelasticity materials received great attention. In the majority of studies in this area, the strain-stiffing effect that plays a major role in many hyperelastic materials has not been investigated deeply. Moreover, the influence of the size effect and large rotation for such a beam that is important for the large deformation was not addressed. This...

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  • Hyperelastic Microcantilever AFM: Efficient Detection Mechanism Based on Principal Parametric Resonance

    Publication
    • A. Alibakhshi
    • S. Rahmanian
    • S. Dastjerdi
    • M. Malikan
    • K. Behrouz
    • B. Akgöz
    • Ö. Civalek

    - Nanomaterials - Year 2022

    The impetus of writing this paper is to propose an efficient detection mechanism to scan the surface profile of a micro-sample using cantilever-based atomic force microscopy (AFM), operating in non-contact mode. In order to implement this scheme, the principal parametric resonance characteristics of the resonator are employed, benefiting from the bifurcation-based sensing mechanism. It is assumed that the microcantilever is made...

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  • Influence of anisotropic stiffness in numerical analyses of tunneling and excavation problems in stiff soils

    Publication

    - Year 2017

    In the stiff overconsolidated soil deposits anisotropy influences small and intermediate strain stiffness and hence it has important impact on the results of discplacement preditcions in soil-structure modelling. The authors developed a cross-anisotropic soil model which combines both stress dependent and micro-structural anisotropy. The model is based on the anisotropic hyperelastic kernel for small strain stiffness. Reference...

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  • A Review of Hyperelastic Constitutive Models for Dielectric Elastomers

    Publication

    - Year 2023

    Dielectric elastomers are smart materials that are essential components in soft systems and structures. The core element of a dielectric elastomer is soft matter, which is mainly rubber-like and elastomeric. These soft materials show a nonlinear behaviour and have a nonlinear strain-stress curve. The best candidates for modelling the nonlinear behaviour of such materials are hyperelastic strain energy functions. Hyperelastic functions...

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  • On the Dynamics of a Visco–Piezo–Flexoelectric Nanobeam

    Publication

    The fundamental motivation of this research is to investigate the effect of flexoelectricity on a piezoelectric nanobeam for the first time involving internal viscoelasticity. To date, the effect of flexoelectricity on the mechanical behavior of nanobeams has been investigated extensively under various physical and environmental conditions. However, this effect as an internal property of materials has not been studied when the...

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