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    D

    Dassault Aviation (France)

    企业EST. 1929
    64论文总数
    467引用总数

    论文量&引用量时间轴

    机构学者

    排序
    Bruno Chanetz
    Bruno Chanetz
    The French Aerospace Lab ONERA
    论文:6引用:0H-index:0
    Pierre-Alain Yvars
    Pierre-Alain Yvars
    Quartz Corp (Norway)
    论文:6引用:0H-index:0
    Patrick Gnemmi
    Patrick Gnemmi
    Retired from French German Research Institute of Saint-Louis
    论文:6引用:0H-index:0
    Erwin R. Gowree
    Erwin R. Gowree
    ISAE SUPAERO, Univ Toulouse
    论文:6引用:0H-index:0
    Jean Délery
    Jean Délery
    Office National d'Études et de Recherches Aérospatiales
    论文:6引用:0H-index:0
    Laurent Zimmer
    Laurent Zimmer
    Direction de la Prospective, Dassault Aviation
    论文:6引用:0H-index:0
    Jacques Périaux
    Jacques Périaux
    CIMNE - International Center for Numerical Methods in Engineering
    论文:5引用:0H-index:0
    Patrick Gilliéron
    Patrick Gilliéron
    论文:5引用:0H-index:0
    Philippe Perrier
    Philippe Perrier
    Dassault Aviation (France)
    论文:5引用:0H-index:0

    论文(64)

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    1Acoustic Band Gaps and Sound Attenuation of Triply Periodic Minimal Surface-Based Metamaterials
    Kamal K Sirivuri, Vignesh Sekar, Wesley J Cantwell,Kin Liao, Benoit Berton, Nicola Ravaud, Pierre-Marie Jacquart,Rashid K. Abu Al-Rub

    This study investigates the manipulation of phonons using triple periodic minimal surface (TPMS) lattices, focusing mainly on noise attenuation for aeronautical applications. Computationally, we obtain the phononic band diagrams for three TPMS lattices of sheet morphologies. Numerical investigations leveraging the bandgap characteristics of these TPMS lattices were used to explore their efficacy in noise attenuation. FRD, Primitive, and Neovius lattices showed a complete bandgap. The Neovius lattice showed the highest band gap width at low frequency and high porosity. In addition to different lattice structures, we investigated the impact of cell size on the bandgap. With an increase in cell size, the frequencies of the bandgap formation decreased. The existence of a complete bandgap within the human audible frequency makes these lattices highly suitable for noise reduction.

    2025INTER-NOISE and NOISE-CON Congress and Conference Proceedings(2025)
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    2T-tail Transonic Flutter Wind Tunnel Test Part 1: Sealing System Design and Model Testing
    Valentin Lanari,Arnaud Lepage, Elsa Bréus
    2024
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    3Electrical Anisotropy and Its Mitigation in Conductive Polymers Printed by Digital Light Processing
    David Tilve-Martinez,Wilfrid Neri,Nicolas Vukadinovic,Benoit Berton,Alain Penicaud,Jinkai Yuan,Philippe Poulin

    In most 3D printing technologies, objects are realized layer by layer. This layer-by-layer construction leads to inherent anisotropic physical properties. Controlling, understanding and sometimes mitigating such anisotropy is a critical issue in the development of 3D printing. We demonstrate and quantify in this work electrical anisotropy in conductive materials processed by the so-called Digital Light Processing (DLP) method. In this method, which enjoys high resolution and high speed, layers of polymers, are successively cross-linked by UV irradiation of 2D patterns. Here, we use acrylate based resins and carbon nanotube as conductive fillers for their low percolation threshold that allows realizing conductive and still sufficiently transparent materials for UV irradiation. Conductivity parallel to the layers of 3D printed objects is found to be much greater than conductivity perpendicular to the layers. This electrical anisotropy is explained by the high contact resistance between printed layers. High contact resistance results from the slow diffusion of carbon nanotubes from the uncured material towards the interface of the cured object. We found that implementing a delay time before curing successive layers, or decreasing the matrix viscosity with temperature, to promote diffusion of the conductive particles allow substantial reduction of the contact resistance between layers. As a result, conductivity anisotropy can be reduced by almost two orders of magnitude. This control and mitigation of conductivity anisotropy allows reconciliation of the high resolution of the DLP technology with the possibility to realize uniform 3D materials.

    2023
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    4Une Méthode, Un Langage Et Un Environnement Pour La Modélisation Et La Résolution De Problème De Conception De Système
    Pierre-Alain Yvars,Laurent Zimmer
    2023
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    5Data-Driven Prediction of Aircraft Vibration Environment During Unsteady Flight Dynamics
    Stéphane Février, Stéphane Nachar,Lionel Mathelin, Frédéric Giordano,Bérengère Podvin
    2023
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    合作机构(61)

    Office National d''Études et de Recherches Aérospatiales合作论文 12
    French-German Research Institute of Saint-Louis合作论文 6
    巴黎萨克雷大学合作论文 6
    图卢兹南部-比利牛斯联邦大学合作论文 5
    原子能和替代能源委员会合作论文 4
    Quartz Corp (Norway)合作论文 4
    图卢兹大学合作论文 3
    巴黎第十一大学合作论文 2
    Institut Clément Ader合作论文 2
    Institut de Radioprotection et de Sûreté Nucléaire合作论文 2

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