NUMERICAL STUDY OF T-JOINT DAMAGE IN SANDWICH COMPOSITE STRUCTURE UNDER QUASI-STATIC LOADING

Composite sandwich structure T-joint have an important function in seaplane float structures in connecting and transferring loads from the hull panel to the bulkhead. Failure of the T-joint can result in a fatal accident. Therefore, it is needed to study T-joint damage to ensure the integrity of the...

Full description

Saved in:
Bibliographic Details
Main Author: Fitriyah, Lailatul
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/62009
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:62009
spelling id-itb.:620092021-10-05T10:19:38ZNUMERICAL STUDY OF T-JOINT DAMAGE IN SANDWICH COMPOSITE STRUCTURE UNDER QUASI-STATIC LOADING Fitriyah, Lailatul Indonesia Final Project T-joint damage, cohesive element, crushable foam, element deletion, ductile damage INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/62009 Composite sandwich structure T-joint have an important function in seaplane float structures in connecting and transferring loads from the hull panel to the bulkhead. Failure of the T-joint can result in a fatal accident. Therefore, it is needed to study T-joint damage to ensure the integrity of the sandwich structure. With the current advancement of computing technology, numerical modeling can already be done to solve this prolem. Therefore, development time and costs can be significantly reduced, and the number of tests that require complex preparation and large costs also can be reduced. Numerical modeling methods in this study is done to observe the failure modes of T-joint in the form of delamination, core crushing, and core shearing by using cohesive element, crushable foam, and element deletion on ABAQUS/CAE software. Damage initiation will be modeled by using traction- separation response in adhesive layer and ductile damage in foam material. The validation process was carried out by comparing the result of the T-joint experiment from the literature with low velocity impact loading. The T-joint model of amphibious airplane float would be given quasi-static loading and analyzed the failure that occurred. The numerical simulation result of this study have been able to visualize the failure to approach the results of the experimental result done by Umut,etc [1]. This shows that the modelling and parameters that used in this numerical simulation can represent the T-joint damage mechanism in real-life condition. 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 Composite sandwich structure T-joint have an important function in seaplane float structures in connecting and transferring loads from the hull panel to the bulkhead. Failure of the T-joint can result in a fatal accident. Therefore, it is needed to study T-joint damage to ensure the integrity of the sandwich structure. With the current advancement of computing technology, numerical modeling can already be done to solve this prolem. Therefore, development time and costs can be significantly reduced, and the number of tests that require complex preparation and large costs also can be reduced. Numerical modeling methods in this study is done to observe the failure modes of T-joint in the form of delamination, core crushing, and core shearing by using cohesive element, crushable foam, and element deletion on ABAQUS/CAE software. Damage initiation will be modeled by using traction- separation response in adhesive layer and ductile damage in foam material. The validation process was carried out by comparing the result of the T-joint experiment from the literature with low velocity impact loading. The T-joint model of amphibious airplane float would be given quasi-static loading and analyzed the failure that occurred. The numerical simulation result of this study have been able to visualize the failure to approach the results of the experimental result done by Umut,etc [1]. This shows that the modelling and parameters that used in this numerical simulation can represent the T-joint damage mechanism in real-life condition.
format Final Project
author Fitriyah, Lailatul
spellingShingle Fitriyah, Lailatul
NUMERICAL STUDY OF T-JOINT DAMAGE IN SANDWICH COMPOSITE STRUCTURE UNDER QUASI-STATIC LOADING
author_facet Fitriyah, Lailatul
author_sort Fitriyah, Lailatul
title NUMERICAL STUDY OF T-JOINT DAMAGE IN SANDWICH COMPOSITE STRUCTURE UNDER QUASI-STATIC LOADING
title_short NUMERICAL STUDY OF T-JOINT DAMAGE IN SANDWICH COMPOSITE STRUCTURE UNDER QUASI-STATIC LOADING
title_full NUMERICAL STUDY OF T-JOINT DAMAGE IN SANDWICH COMPOSITE STRUCTURE UNDER QUASI-STATIC LOADING
title_fullStr NUMERICAL STUDY OF T-JOINT DAMAGE IN SANDWICH COMPOSITE STRUCTURE UNDER QUASI-STATIC LOADING
title_full_unstemmed NUMERICAL STUDY OF T-JOINT DAMAGE IN SANDWICH COMPOSITE STRUCTURE UNDER QUASI-STATIC LOADING
title_sort numerical study of t-joint damage in sandwich composite structure under quasi-static loading
url https://digilib.itb.ac.id/gdl/view/62009
_version_ 1822003989136277504