Crashworthiness behaviour of the stiffened panel in idealized penetration test: A developed stiffening configuration against impact loading
Volume
76
Issue number
2
Article number
76205
Received
26 August 2024
Received in revised form
24 November 2024
Accepted
07 March 2025
Available online
11 March 2025
Authors
Brilliant Aditya Fhandy1, Aditya Rio Prabowo1, Tuswan Tuswan2,*, Achmad Zubaydi3, Dharu Feby Smaradhana4, Seung Jun Baek5, Siti Nurlita Fitri6
1 Department of Mechanical Engineering, Universitas Sebelas Maret, Surakarta, Indonesia
2 Department of Naval Architecture, Universitas Diponegoro, Semarang, Indonesia
3 Department of Naval Architecture, Institut Teknologi Sepuluh Nopember, Surabaya, Indonesia
4 Department of Aeronautics, Imperial College London, London, United Kingdom
5 Advanced-Green Technology Center, Korea Marine Equipment Research Institute, Busan, South Korea
6 Department of Civil Engineering, Gifu University, Gifu, Japan
Corresponding author email
Abstract
This study focuses on the crashworthiness performance due to collision accidents on stiffened plate panels on ship structures. Numerical impact simulation using explicit dynamic with ANSYS software on the stiffened plate with quasi-static loading is investigated. The investigation emphasizes numerical parameters such as mesh size and geometric parameters, including stiffener type, spacing, and configuration. Benchmarking results show high accuracy, with force-displacement trends and fracture energy discrepancies less than 5 % compared to experimental data. Deformation and fracture contours are similar to experimental observations, particularly at plate-stiffener intersections. Key findings highlight the crucial impact of mesh size on accuracy, where a finer mesh size significantly increases the accuracy level. The study also evaluates the effect of different stiffener types, configurations, and spacings on crashworthiness. The Single-L and Cross-Y stiffeners perform better than the T and I stiffeners. Other investigations show stiffener configuration and stiffener spacing generally influence crashworthiness performance. This research underlines the importance of detailed structural analysis for enhancing ship safety in collision scenarios, vital for minimizing potential losses and environmental damage.
Keywords
Engineering, Crashworthiness behaviour, Penetration test, Steel panel, Stiffening system