水下用湿配合电连接器往复密封分析

Han Quan, Yan Zhang, Chen Haiyang, Juekuan Yang, Yunfei Chen
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引用次数: 0

摘要

为了在深水环境下完成水下电连接器的配合和拆卸作业,设计了压力平衡充油结构来补偿巨大的水压。本文重点介绍了连接器中使用的三种密封系统的密封性能,包括o型环密封、矩形密封和u型杯密封。提出了一种有限元分析与弹流动力润滑数值模型相结合的方法来描述这一问题。结果表明,矩形密封对流体泄漏的抑制效果最好,而o形圈密封对减小摩擦力的抑制效果最好。油封泄漏量随速度增加而增加,而海水泄漏量基本保持不变。所有密封件的漏油量均大于海水泄漏量。密封圈的类型、流体粘度和连接器的运行速度都会影响湿配合连接器的密封性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Reciprocating Seals in the Wet-Mate Electrical Connectors for Underwater Applications
In order to complete the mating and demating operations of the electrical connectors for underwater applications in the deep water environment, the pressure-balanced oil-filled (PBOF) structures are designed to compensate the huge water pressure. This paper focuses on the sealing performance of three sealing systems used in connectors, including the O-ring seals, rectangular seals, and U-cup seals. A method coupled the finite element analysis and elastohy-drodynamic lubrication (EHL) numerical model is presented to describe the issue. Results show that the rectangular seals perform best in fluid leakage, and O-ring seals are better in reducing the friction force. The oil leakages of the seals increase with the speed while the seawater leakages remain roughly constant. And the oil leakages of all the seals are larger than the seawater leakage. Types of seal rings, fluid viscosity and operation speed of connector can all influence the sealing performance of wet-mate connectors.
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