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Search results for: NEGATIVE POISSON'S RATIO

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Search results for: NEGATIVE POISSON'S RATIO

  • Zespół Fizyki Ciała Stałego

    Tematyka badawcza Katedry Fizyki Ciała Stałego obejmuje wytwarzanie i badanie materiałów dla energetyki (m.in. nanostruktury, sensory) o innowacyjnych właściwościach fizyko-chemicznych, tj: * kryształy, polikryształy, ceramika, szkło * materiały objętościowe, cienkie warstwy, nanomateriały * materiały metaliczne, półprzewodnikowe, nadprzewodnikowe, izolatory Tematyka badawcza obejmuje również badania symulacyjne i obliczeniowe...

  • Katedra Inżynierii Drogowej i Transportowej

    Katedra Inżynierii Drogowej i Transportowej jest jedną z najstarszych katedr Politechniki Gdańskiej. Prowadzi prace naukowo-badawcze obejmujące szereg zagadnień związanych z budową dróg, autostrad i lotnisk oraz w zakresie transportu, ruchu drogowego oraz bezpieczeństwa ruchu drogowego.

  • Katedra Automatyki i Energetyki

    Mikroprocesorowe urządzenia pomiarowo-rejestrujące i systemy monitorowania wykorzystujące technologie sieciowe, systemy sterowania urządzeniami i procesami technologicznymi. Systemy sterowania w obiektach energetyki odnawialnej, skupionych i rozproszonych. Modelowanie i symulacja obiektów dynamicznych, procesów oraz systemów sterowania i kontroli; projektowanie interfejsów operatorskich. Systemy elektroenergetyczne i automatyki...

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Search results for: NEGATIVE POISSON'S RATIO

  • Tailoring Graphene to Achieve Negative Poisson's Ratio Properties

    Publication

    - ADVANCED MATERIALS - Year 2015

    Graphene can be made auxetic through the introduction of vacancy defects. This results in the thinnest negative Poisson's ratio material at ambient conditions known so far, an effect achieved via a nanoscale de-wrinkling mechanism that mimics the behavior at the macroscale exhibited by a crumpled sheet of paper when stretched.

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  • Anisotropic mechanical behavior and auxeticity of penta-graphene: Molecular statics/molecular dynamics studies

    Publication

    We investigate the mechanical properties of penta-graphene (PG), a recently proposed two-dimensional carbon allotrope using atomistic simulation techniques combined with the empirical description of interatomic interactions. We report on the dependence of its three in-plane mechanical moduli (i.e. Young's modulus, Poisson's ratio and shear modulus) on the deformation direction, strain and temperature. We show that PG displays a...

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  • Auxetic foams

    Publication

    - Year 2012

    This paper presents a method of producing auxetic polyurethane foams (PUFs) and their unique properties. The experience was based on a synthesis of traditional flexible polyurethane foam and thermal conversion to auxetic foam. The foam specimens were transformed from conventional Poisson's ratio to auxetic (negative Poisson's ratio) [1]. Basic research was performed to determine the mechanical properties and cell structure. Auxetic...

  • Count Data Modeling About Relationship Between Dubai Housing Sales Transactions and Financial Indicators

    Publication

    - Year 2017

    In this study, illustrating and comparing the performances of count data models such as Poisson, negative binomial (NB), Hurdle and zero-inflated models for the determination of factors affected housing sales in Dubai. Model comparisons are made via Akaike’s information criterion (AIC), the Vuong test and examining the residuals. Main purpose of this study is building reliable statistical model for relationship between Dubai housing...

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  • Negative Poisson’s ratio from pentagons: A new auxetic structure combining three different auxetic mechanisms

    A novel class of two-dimensional auxetic structures based on the pentagon motif is proposed. Their mechanical properties are investigated by combining molecular mechanics simulations with a simple three-parameter mechanical model which assumes perfectly elastic behavior. It is predicted that the proposed structures – termed as double re-entrant honeycomb – may possess unique mechanical characteristics, which include complete and...

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