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Publishing Language: Chinese

Pressure hull material selection and load law of unmanned underwater vehicle

Shuo WANG1Zhiyuan MEI1( )Xiao FU1Yi ZHONG2
College of Naval Architecture and Ocean Engineering, Naval University of Engineering, Wuhan 430033, China
The 91697 Unit of PLA, Qingdao 266000, China
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Abstract

Objectives

This study takes a typical pressure hull segment of an unmanned underwater vehicle (UUV) as the object and explores its load bearing capacity law based on lightweight design technology.

Methods

First, several typical materials are analyzed using the mechanical properties of the pressure hull, load law and optimal critical load design value (stress strength failure and stability failure occur concurrently). The bearing properties of a typical pressure hull with varying depths are then discussed further in terms of the specific engineering requirements.

Results

The failure mode of the shell gradually transitions from stability failure to strength failure as the depth increases, and the optimal critical load design value is proportional to the qualities of the material. Taking bearing efficiency and other factors into consideration, aluminum alloy shells should be selected within the 300 m depth range, titanium alloy and glass fiber composite shells within the 300−600 m depth range, and titanium alloy and carbon fiber composite shells within the 600−1 000 m depth range. In the 1 000−3 000 m depth range, a carbon fiber and boron fiber composite shell is the ideal solution.

Conclusions

The findings of this study can be used to guide the design of pressure hulls for UUVs made of various materials.

CLC number: U661.43;U663.1 Document code: A

References

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Chinese Journal of Ship Research
Pages 247-253

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Cite this article:
WANG S, MEI Z, FU X, et al. Pressure hull material selection and load law of unmanned underwater vehicle. Chinese Journal of Ship Research, 2024, 19(4): 247-253. https://doi.org/10.19693/j.issn.1673-3185.03334

2008

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Received: 24 April 2023
Revised: 07 August 2023
Published: 17 April 2024
© 2024 Chinese Journal of Ship Research.