VIBRATION ANALYSIS ON SANDWICH STRUCTURE WITH AUXETIC CORE FOR IN- PLANE CONFIGURATION

Begins as a development for aircraft structure, sandwich composite structures are increasingly used for various applications in other vehicle structures because they have specific stiffness and strength, as well as high energy absorption capabilities. The development of sandwich structures is widely...

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Main Author: Marcelina, Mela
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/61940
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:61940
spelling id-itb.:619402021-09-28T15:03:09ZVIBRATION ANALYSIS ON SANDWICH STRUCTURE WITH AUXETIC CORE FOR IN- PLANE CONFIGURATION Marcelina, Mela Indonesia Final Project Auxetic, Natural Frequency, Vibrating Mode INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/61940 Begins as a development for aircraft structure, sandwich composite structures are increasingly used for various applications in other vehicle structures because they have specific stiffness and strength, as well as high energy absorption capabilities. The development of sandwich structures is widely carried out in the core, one of which is the use of auxetic materials. With the characteristics of negative poisson's ratio, auxetic structures could provide an advantage in aspects of stiffness and high energy absorbing ability. To support the practical implementation of auxetic materials, various studies are needed to determine the properties and responses of auxetic structures in various loading conditions. One of them is characteristic in the form of a response to vibrations. In this research, will be conducted a study of the characteristic structure of sandwiches with auxetic core in the case of vibration by conducting numerical simulations using ABAQUS / CAE software. The simulation is done by modeling the face sheet as a solid element and the core as a shell element, with constraints in the form of shell-to-solid coupling, as well as fixed limit conditions at the left end. Modeling is done by varying several parameters of re-entrant cells, including: angular values ?, h/l, and t/l. Analysis showed that the natural frequencies closest to solid structures were obtained at an angle of ? = -50, h/l ? 0,95, and t/l ? 0,166 with the average difference of 5%. With significant reduction in mass of 53,5%. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Begins as a development for aircraft structure, sandwich composite structures are increasingly used for various applications in other vehicle structures because they have specific stiffness and strength, as well as high energy absorption capabilities. The development of sandwich structures is widely carried out in the core, one of which is the use of auxetic materials. With the characteristics of negative poisson's ratio, auxetic structures could provide an advantage in aspects of stiffness and high energy absorbing ability. To support the practical implementation of auxetic materials, various studies are needed to determine the properties and responses of auxetic structures in various loading conditions. One of them is characteristic in the form of a response to vibrations. In this research, will be conducted a study of the characteristic structure of sandwiches with auxetic core in the case of vibration by conducting numerical simulations using ABAQUS / CAE software. The simulation is done by modeling the face sheet as a solid element and the core as a shell element, with constraints in the form of shell-to-solid coupling, as well as fixed limit conditions at the left end. Modeling is done by varying several parameters of re-entrant cells, including: angular values ?, h/l, and t/l. Analysis showed that the natural frequencies closest to solid structures were obtained at an angle of ? = -50, h/l ? 0,95, and t/l ? 0,166 with the average difference of 5%. With significant reduction in mass of 53,5%.
format Final Project
author Marcelina, Mela
spellingShingle Marcelina, Mela
VIBRATION ANALYSIS ON SANDWICH STRUCTURE WITH AUXETIC CORE FOR IN- PLANE CONFIGURATION
author_facet Marcelina, Mela
author_sort Marcelina, Mela
title VIBRATION ANALYSIS ON SANDWICH STRUCTURE WITH AUXETIC CORE FOR IN- PLANE CONFIGURATION
title_short VIBRATION ANALYSIS ON SANDWICH STRUCTURE WITH AUXETIC CORE FOR IN- PLANE CONFIGURATION
title_full VIBRATION ANALYSIS ON SANDWICH STRUCTURE WITH AUXETIC CORE FOR IN- PLANE CONFIGURATION
title_fullStr VIBRATION ANALYSIS ON SANDWICH STRUCTURE WITH AUXETIC CORE FOR IN- PLANE CONFIGURATION
title_full_unstemmed VIBRATION ANALYSIS ON SANDWICH STRUCTURE WITH AUXETIC CORE FOR IN- PLANE CONFIGURATION
title_sort vibration analysis on sandwich structure with auxetic core for in- plane configuration
url https://digilib.itb.ac.id/gdl/view/61940
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