Ship Structural Integrity of Aluminium Stiffener Panel for Consequence Reduction

Dr. O. O. Sulaiman
Dr. O. O. Sulaiman
A.S.A.Kader
A.S.A.Kader
W.B.Wan Nick
W.B.Wan Nick
A.H. Saharuddin
A.H. Saharuddin
Universiti Malaysia Terengganu Universiti Malaysia Terengganu

Send Message

To: Author

Ship Structural Integrity of Aluminium Stiffener Panel for Consequence Reduction

Article Fingerprint

ReserarchID

DH9HS

Ship Structural Integrity of Aluminium Stiffener Panel for Consequence Reduction Banner

AI TAKEAWAY

Connecting with the Eternal Ground
  • English
  • Afrikaans
  • Albanian
  • Amharic
  • Arabic
  • Armenian
  • Azerbaijani
  • Basque
  • Belarusian
  • Bengali
  • Bosnian
  • Bulgarian
  • Catalan
  • Cebuano
  • Chichewa
  • Chinese (Simplified)
  • Chinese (Traditional)
  • Corsican
  • Croatian
  • Czech
  • Danish
  • Dutch
  • Esperanto
  • Estonian
  • Filipino
  • Finnish
  • French
  • Frisian
  • Galician
  • Georgian
  • German
  • Greek
  • Gujarati
  • Haitian Creole
  • Hausa
  • Hawaiian
  • Hebrew
  • Hindi
  • Hmong
  • Hungarian
  • Icelandic
  • Igbo
  • Indonesian
  • Irish
  • Italian
  • Japanese
  • Javanese
  • Kannada
  • Kazakh
  • Khmer
  • Korean
  • Kurdish (Kurmanji)
  • Kyrgyz
  • Lao
  • Latin
  • Latvian
  • Lithuanian
  • Luxembourgish
  • Macedonian
  • Malagasy
  • Malay
  • Malayalam
  • Maltese
  • Maori
  • Marathi
  • Mongolian
  • Myanmar (Burmese)
  • Nepali
  • Norwegian
  • Pashto
  • Persian
  • Polish
  • Portuguese
  • Punjabi
  • Romanian
  • Russian
  • Samoan
  • Scots Gaelic
  • Serbian
  • Sesotho
  • Shona
  • Sindhi
  • Sinhala
  • Slovak
  • Slovenian
  • Somali
  • Spanish
  • Sundanese
  • Swahili
  • Swedish
  • Tajik
  • Tamil
  • Telugu
  • Thai
  • Turkish
  • Ukrainian
  • Urdu
  • Uzbek
  • Vietnamese
  • Welsh
  • Xhosa
  • Yiddish
  • Yoruba
  • Zulu
Font Type
Font Size
Font Size
Bedground

Abstract

The aluminium stiffener panels in ship structure are paramount to ensure safety and to guarantee the structural strength and integrity of the ship. The aluminium stiffener panel is very important to ship building, especially when the ship faces collision or unstabilized structure; the aluminium stiffener panel tends to increase bending moment, vertical shear force and stresses. This study investigate the strength of the aluminium stiffener panel at the amidship bulkhead with different shapes and typesin order to determine the strength of the aluminium stiffener from its features. AA 5083-H116 aluminium stiffener panel used has been approved by the recognized organization for shipbuilding. The aluminium stiffener panel has been tested using bending moment test and compressive load to obtain the highest endurance. Three types of aluminium stiffener panels, which are a flat shaped, L-shaped and T-shaped panel, are used in order to obtain the best panel ability for a better ship structural system. The aluminium stiffener panel is tested at the area where it is different to determine area where they are affected by extreme heat due to the welding results and fabrication. The result has showed that the aluminium stiffener panel in shipbuilding process effect in an area without extreme heat is more stable.

References

12 Cites in Article
  1. Yufeng Zha,Torgeir Moan (2001). Ultimate strength of stiffened aluminium panels with predominantly torsional failure modes.
  2. P Rigoa,R Sarghiutab,S Estefenc,E Lehmannd,S Otelead,I Pasqualinoc,B Simonsene,Z Wanf,T Yaog (2003). Sensitivity analysis on ultimate strength of aluminium stiffened panels.
  3. Lars Brubak,Jostein Hellesland (2007). Semi-analytical postbuckling and strength analysis of arbitrarily stiffened plates in local and global bending.
  4. N Ye,T Moan (2007). Static and fatigue analysis of three types of aluminium box-stiffener/web frame connections.
  5. Lars Brubak,Jostein Hellesland (2008). Strength criteria in semi-analytical, large deflection analysis of stiffened plates in local and global bending.
  6. M Khedmati,K Ghavami (2009). A numerical assessment of the buckling/ultimate strength characteristics of stiffened aluminium plates with fixed/floating transverse frames.
  7. Jeom Paik,Jung Seo (2009). Nonlinear finite element method models for ultimate strength analysis of steel stiffened-plate structures under combined biaxial compression and lateral pressure actions—Part I: Plate elements.
  8. . Sekulski (2009). Least-weight topology and size optimization of high speed vehicle-passenger catamaran structure by genetic algorithm.
  9. Mohammad Khedmati,Mohammad Zareei,Philippe Rigo (2009). Sensitivity analysis on the elastic buckling and ultimate strength of continuous stiffened aluminium plates under combined in-plane compression and lateral pressure.
  10. D Wang,L Ye,Y Lu,Z Su (2009). Probability of the presence of damage estimated from an active sensor network in a composite panel of multiple stiffeners.
  11. D Bonorchis,G Nurick (2010). The analysis and simulation of welded stiffener plates subjected to localised blast loading.
  12. Lars Rønning,Arne Aalberg,Per Kristian Larsen (2010). An experimental study of ultimate compressive strength of transversely stiffened aluminium panels.

Funding

No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

Ethical Approval

No ethics committee approval was required for this article type.

Data Availability

Not applicable for this article.

How to Cite This Article

Dr. O. O. Sulaiman. 2012. \u201cShip Structural Integrity of Aluminium Stiffener Panel for Consequence Reduction\u201d. Global Journal of Research in Engineering - B: Automotive Engineering GJRE-B Volume 12 (GJRE Volume 12 Issue B2).

Download Citation

Journal Specifications

Crossref Journal DOI 10.17406/gjre

Print ISSN 0975-5861

e-ISSN 2249-4596

Version of record

v1.2

Issue date
August 25, 2012

Language
en
Experiance in AR

Explore published articles in an immersive Augmented Reality environment. Our platform converts research papers into interactive 3D books, allowing readers to view and interact with content using AR and VR compatible devices.

Read in 3D

Your published article is automatically converted into a realistic 3D book. Flip through pages and read research papers in a more engaging and interactive format.

Article Matrices
Total Views: 5690
Total Downloads: 2694
2026 Trends
Related Research
Our website is actively being updated, and changes may occur frequently. Please clear your browser cache if needed. For feedback or error reporting, please email [email protected]

Request Access

Please fill out the form below to request access to this research paper. Your request will be reviewed by the editorial or author team.
X

Quote and Order Details

Contact Person

Invoice Address

Notes or Comments

This is the heading

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo.

High-quality academic research articles on global topics and journals.

Ship Structural Integrity of Aluminium Stiffener Panel for Consequence Reduction

Dr. O. O. Sulaiman
Dr. O. O. Sulaiman <p>Universiti Malaysia Terengganu</p>
A.S.A.Kader
A.S.A.Kader
W.B.Wan Nick
W.B.Wan Nick
A.H. Saharuddin
A.H. Saharuddin

Research Journals