Logo DOAB
  • Connection pour éditeurs
    • Support
    • Language 
      • English
      • français
    • Deposit
            Voir le document 
            •   Accueil de DSpace
            • Voir le document
            •   Accueil de DSpace
            • Voir le document
            JavaScript is disabled for your browser. Some features of this site may not work without it.

            Chapter Unmanned Ground and Aerial Robots Supporting Mine Action Activities

            Thumbnail
            Auteur
            Doroftei, Ioan
            Baudoin, Yvan
            Balta, Haris
            De Cubber, Geert
            Doroftei, Daniela
            Language
            English
            Afficher la notice complète
            Résumé
            Lightweight protective structures and materials such as the personal protective equipment (PPE) for explosive ordnance disposal (EOD) personnel are frequently under investigation globally. Their mechanical response to impulsive loads such as blast and ballistic impacts is critical for establishing the spectrum of their performance against various types of threats. This chapter presents a novel testing technique that incorporates three near-simultaneous impacts in one shot in order to acquire deeper understanding of the dynamic interactions that take place during an explosion. A numerical model of an aramid fabric is developed to examine the parameters that influence the ballistic performance under multiple impacts. Fragment cluster impacts with dense dispersion have increased probability to perforate the target material. Heterogeneous, non-isotropic materials, like most of the ballistic grade protective materials, distribute the energy of the impacts in the form of stress wave streams causing the material to behave differently depending on the formation of the impacting fragments. Experimental work with aramid fabrics against single and triple impacts with the fragment-simulating projectile (FSP, 1.102 g) indicates that the ballistic limit in triple impacts is considerably lower that the ballistic limit in single impacts. The actual ballistic performance against multiple fragment impacts is severely underestimated with the classical single-impact methodologies.
            URI
            https://doab-dev.siscern.org/handle/20.500.12854/159007
            Keywords
            PPE, fragmentation protection, ballistic test, multiple impacts, triple impacts
            DOI
            10.5772/65783
            Publisher
            InTechOpen
            Publication date and place
            2017
            Classification
            Geographical information systems (GIS) & remote sensing
            • OAPEN harvesting collection

            Parcourir

            Tout DSpaceSubjectsPublishersLanguagesCollections

            Mon compte

            Ouvrir une sessionS'inscrire

            Export

            Repository metadata
            Doabooks

            • For Researchers
            • For Librarians
            • For Publishers
            • Our Supporters
            • Resources
            • DOAB

            Newsletter


            • subscribe to our newsletter
            • view our news archive

            Follow us on

            • Twitter

            License

            • If not noted otherwise all contents are available under Attribution 4.0 International (CC BY 4.0)

            donate


            • Donate
              Support DOAB and the OAPEN Library

            Credits


            • logo Investir l'avenirInvestir l'avenir
            • logo MESRIMESRI
            • logo EUEuropean Union
              This project received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 871069.

            Directory of Open Access Books is a joint service of OAPEN, OpenEdition, CNRS and Aix-Marseille Université, provided by DOAB Foundation.

            Websites:

            DOAB
            www.doabooks.org

            OAPEN Home
            www.oapen.org

            OAPEN OA Books Toolkit
            www.oabooks-toolkit.org

            Export search results

            The export option will allow you to export the current search results of the entered query to a file. Differen formats are available for download. To export the items, click on the button corresponding with the preferred download format.

            A logged-in user can export up to 15000 items. If you're not logged in, you can export no more than 500 items.

            To select a subset of the search results, click "Selective Export" button and make a selection of the items you want to export. The amount of items that can be exported at once is similarly restricted as the full export.

            After making a selection, click one of the export format buttons. The amount of items that will be exported is indicated in the bubble next to export format.