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基于Workbench的水下探测舱体O形圈密封性能分析

王光明 黄旻 赵益昕 王占超 钱路路

机电工程技术2026,Vol.55Issue(6):36-40,84,6.
机电工程技术2026,Vol.55Issue(6):36-40,84,6.DOI:10.3969/j.issn.1009-9492.2025.00065

基于Workbench的水下探测舱体O形圈密封性能分析

Analysis of Sealing Characteristics of O-ring for an Underwater Probe Cabin Based on Workbench

王光明 1黄旻 2赵益昕 1王占超 2钱路路2

作者信息

  • 1. 中国科学院 空天信息创新研究院,北京 100086||中国科学院 计算光学成像技术重点实验室,北京 100094
  • 2. 中国科学院 空天信息创新研究院,北京 100086||中国科学院 计算光学成像技术重点实验室,北京 100094||中国科学院大学 光电学院,北京 100094
  • 折叠

摘要

Abstract

Optical instruments play a significant role in the exploration and research of underwater organisms and energy,generally,optical instruments are built in the probe cabin,the sealing characteristics of the cabin has a significant impact on the service life and application effect of optical instruments,therefore,it is necessary to analyze the sealing characteristics of the cabin.A two-dimensional axis-symmetric model of the sealing area of the underwater probe cabin is established on ANSYS workbench platform.The Mooney-Rivlin two-parameter model is used to simulate the assembly process of nitrile O-rings,and those O-rings not prone to large shear deformation during assembly process are chosen to perform sealing characteristics simulation in 200 m water depth.By comparative analysis of contact pressure,shear force and compression ratio of O-rings,it is found in the medium pressure of 2 MPa,the values of 2.8 mm and 3.0 mm wire diameter O-rings are basically similar in the calculation results.Considering the influence of precompression rate on assembly,the O-ring with 2.8 mm wire diameter is selected as the model used for the probe cabin.The analysis provides theoretical basis for the design of cabin seal,and hydrostatic pressure test of the cabin sealing performance verifies that the underwater probe cabin meets the requirements of sealing.

关键词

水下探测舱体/O形圈/超弹材料/接触压力/接触间隙/密封性能

Key words

underwater probe cabin/O-ring/hyperelastic material/contact pressure/contact gap/sealing characteristics

分类

机械制造

引用本文复制引用

王光明,黄旻,赵益昕,王占超,钱路路..基于Workbench的水下探测舱体O形圈密封性能分析[J].机电工程技术,2026,55(6):36-40,84,6.

基金项目

中国科学院青年创新促进会资助项目 ()

机电工程技术

1009-9492

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