Dokument-ID Dokumenttyp Verfasser/Autoren Herausgeber Haupttitel Abstract Auflage Verlagsort Verlag Erscheinungsjahr Seitenzahl Schriftenreihe Titel Schriftenreihe Bandzahl ISBN Quelle der Hochschulschrift Konferenzname Quelle:Titel Quelle:Jahrgang Quelle:Heftnummer Quelle:Erste Seite Quelle:Letzte Seite URN DOI Abteilungen OPUS4-6415 Wissenschaftlicher Artikel Ansari, Meisam; Tartaglione, Fabiola; Könke, Carsten Experimental Validation of Dynamic Response of Small-Scale Metaconcrete Beams at Resonance Vibration Structures and their components experience substantially large vibration amplitudes at resonance, which can cause their failure. The scope of this study is the utilization of silicone-coated steel balls in concrete as damping aggregates to suppress the resonance vibration. The heavy steel cores oscillate with a frequency close to the resonance frequency of the structure. Due to the phase difference between the vibrations of the cores and the structure, the cores counteract the vibration of the structure. The core-coating inclusions are randomly distributed in concrete similar to standard aggregates. This mixture is referred to as metaconcrete. The main goal of this work is to validate the ability of the inclusions to suppress mechanical vibration through laboratory experiments. For this purpose, two small-scale metaconcrete beams were cast and tested. In a free vibration test, the metaconcrete beams exhibited a larger damping ratio compared to a similar beam cast from conventional concrete. The vibration amplitudes of the metaconcrete beams at resonance were measured with a frequency sweep test. In comparison with the conventional concrete beam, both metaconcrete beams demonstrated smaller vibration amplitudes. Both experiments verified an improvement in the dynamic response of the metaconcrete beams at resonance vibration. Basel MDPI 17 materials 2023 volume 16, issue 14, article 5029 1 17 urn:nbn:de:gbv:wim2-20230818-64154 10.3390/ma16145029 Professur Baustatik und Bauteilfestigkeit OPUS4-4937 Wissenschaftlicher Artikel Ansari, Meisam; Zacharias, Christin; Könke, Carsten Metaconcrete: An Experimental Study on the Impact of the Core-Coating Inclusions on Mechanical Vibration Resonance vibration of structures is an unpleasant incident that can be conventionally avoided by using a Tuned Mass Damper (TMD). The scope of this paper contains the utilization of engineered inclusions in concrete as damping aggregates to suppress resonance vibration similar to a TMD. The inclusions are composed of a stainless-steel core with a spherical shape coated with silicone. This configuration has been the subject of several studies and it is best known as Metaconcrete. This paper presents the procedure of a free vibration test conducted with two small-scaled concrete beams. The beams exhibited a higher damping ratio after the core-coating element was secured to them. Subsequently, two meso-models of small-scaled beams were created: one representing conventional concrete and the other representing concrete with the core-coating inclusions. The frequency response curves of the models were obtained. The change in the response peak verified the ability of the inclusions to suppress the resonance vibration. This study concludes that the core-coating inclusions can be utilized in concrete as damping aggregates. Basel MDPI 18 materials 2023 Volume 16, Issue 5, article 1836 1 18 urn:nbn:de:gbv:wim2-20230315-49370 10.3390/ma16051836 Professur Baustatik und Bauteilfestigkeit OPUS4-741 Masterarbeit / Diplomarbeit Wehner, Diana Dynamische Analyse der Dreiturmanlage der St. Severikirche in Erfurt Im Zusammenhang mit der gegenwärtigen Zustandsbewertung und geplanten Sanierung der Dreiturmanlage der St. Severikirche in Erfurt wird eine dynamische Analyse unter Glockenläuten mit Hilfe eines Finite-Elemente-Modells durchgeführt. Mit diesem unter Verwendung des Programms SLang erstellten FE-Modell wird das Schwingungsverhalten der Dreiturmanlage nachgebildet. Dabei dient als Grundlage die zuvor erfolgte Schwingungsmessung. Mit dem angepassten Modell werden schwingungsreduzierende Maßnahmen hinsichtlich ihrer Wirksamkeit untersucht und bewertet. Weiterhin wird an Ersatzsystemen die aktive Schwingungsisolierung mittels Glockenstuhlunterkonstruktion und der Einbau eines passiven Tilgerdämpfers betrachtet. 2006 urn:nbn:de:gbv:wim2-20111215-7410 10.25643/bauhaus-universitaet.741 Professur Baumechanik