Finite element analysis and design optimization of composite T-joints for enhanced maritime and aerospace applications

Yadav, Sachin and Pawar, Ramkisan S. and Sambare, Amogh A. and Deshpande, Sushil (2023) Finite element analysis and design optimization of composite T-joints for enhanced maritime and aerospace applications. Engineering Solid Mechanics, 12 (2). pp. 157-164. ISSN 22918744

[thumbnail of esm_2023_40.pdf] Text
esm_2023_40.pdf - Published Version

Download (746kB)

Abstract

Composite marine structures are crucial for maritime and aerospace applications due to their strength-to-weight ratio and corrosion resistance. To ensure their reliability and durability, a methodology to predict the damage criticality and service life of composite marine T-joints is essential. Finite Element Analysis (FEA) has emerged as a powerful tool for preliminary design and structural evaluation of complex structures, reducing the need for extensive experimental work and leading to substantial cost savings. This research project aims to conduct a comprehensive FEA of composite T-joints, considering alternative skin, core, and infill materials. Structural analyses under various loading conditions will evaluate overall deflection and stress levels, aiming to enhance the design and reliability of composite marine constructions, ultimately improving their performance and extending their service life in demanding maritime and aerospace environments.

Item Type: Article
Subjects: Apsci Archives > Engineering
Depositing User: Unnamed user with email support@apsciarchives.com
Date Deposited: 12 Apr 2024 12:47
Last Modified: 12 Apr 2024 12:47
URI: http://eprints.go2submission.com/id/eprint/2722

Actions (login required)

View Item
View Item