Blar i forfatter "Andersen, Kristian G"
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Construction and Installation of the New CERN Proton Synchrotron Internal Beam Dumps
Andersen, Kristian G; Calviani, Marco; Cherif, Ahmed; Coiffet, Thibaut; De Macedo, Aurelio; Devidal, Sylvain; Geisser, Jean-Marie; Gilardoni, Simone S; Gillet, Martin; Grenier-Boley, Edouard; Heredia, Jorge; Majbour, Abdelhabib; Monnet, Franck; Monteserin, Manuel Redondas; Nuiry, Francois-Xavier; Pugnat, Dominique; Romagnoli, Giulia; Seraphin, Yann; Somoza, Jose; Thaus, Nicolas (Chapter; Bokkapittel, 2021-08-26)In the framework of the CERN Large Hadron Collider Injectors Upgrade (LIU) Project, the Proton Synchrotron (PS) has been equipped with two new movable Internal Dumps (PSID), each of them capable of absorbing particle beams of an energy of up to 100 kJ. These dumps replace the old Internal Dumps, which have been operated in the accelerator complex since their installation in 1975 until their ... -
Damage Characterisation in Composite Laminates Using Vibro-Acoustic Technique
Andersen, Kristian G; Jombo, Gbanaibolou; Ismail, Sikiru Oluwarotimi; Chen, Yong Kang; Dhakal, Hom Nath; Zhang, Yu (Journal article; Tidsskriftartikkel; Peer reviewed, 2021-04-30)The need to characterise in-service damage in composite structures is increasingly becoming important as composites find higher utilisation in wind turbines, aerospace, automotive, marine, among others. This paper investigates the feasibility of simplifying the conventional acousto-ultrasonic technique set-up for quick and economic one-sided in-service inspection of composite structures. Acousto-ultrasonic ... -
Investigation of Composite Mechanical Properties from Additive Manufacturing
Andleeb, Zahra; Khawaja, Hassan; Andersen, Kristian G; Edvardsen, Kåre; Moatamedi, Mojtaba (Conference object; Konferansebidrag, 2022)Manufacturers consider carbon fiber as a wonder material for the world's economy. Its distinctive combination of high strength and low weight has helped drive the wind power revolution and make aircraft and ships more fuel-efficient. In addition, the carbon fiber structures can function longer and are more rigid than the traditional metallic models, making them more resilient in cold and more efficient ...