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基于预应力钢丝缠绕技术的深海超高压试验装置研制与应用
引用本文:张海龙,蒋磊. 基于预应力钢丝缠绕技术的深海超高压试验装置研制与应用[J]. 海洋技术学报, 2017, 36(5): 10-15. DOI: 10.3969/j.issn.1003-2029.2017.05.002
作者姓名:张海龙  蒋磊
作者单位:中国科学院深海科学与工程研究所,海南三亚,572000
基金项目:国家重点研发计划重点专项资助项目,中国科学院战略性先导科技专项(B类)课题资助
摘    要:深海超高压环境模拟试验装置是深海关键技术与装备研究中必不可少的测试装置。采用传统的一体式压力筒研制大直径、超高压试验装置时难以克服应力集中的问题,安全性较低且造价昂贵。采用预应力钢丝缠绕技术研制的深海超高压环境模拟试验装置克服了其局限性,该装置是目前国内工作压力最高、可实现筒内环境数据监测且升降压自动控制的压力试验装置。文中简要介绍了该装置的系统组成及研制过程中主要关键技术问题及解决方法,最后介绍了典型实验应用,为深海超高压环境模拟试验装置的研制与应用提供参考。

关 键 词:预应力钢丝缠绕  超高压  试验装置

Development and Application of the Ultrahigh Pressure Testing Equipment for Deep-sea Application Based on Pre-stressed Steel Wire-Winding Technology
ZHANG Hai-long,JIANG Lei. Development and Application of the Ultrahigh Pressure Testing Equipment for Deep-sea Application Based on Pre-stressed Steel Wire-Winding Technology[J]. Ocean Technology, 2017, 36(5): 10-15. DOI: 10.3969/j.issn.1003-2029.2017.05.002
Authors:ZHANG Hai-long  JIANG Lei
Affiliation:Institute of Deep-Sea Science and Engineering, Chinese Academy of Sciences
Abstract:The ultrahigh pressure testing equipment for the environment simulation of deep-sea is an essential testing device in the research of key technologies and equipment in the deep sea. It is difficult to overcome the problems of stress concentration by using a conventional integrated pressure cylinder. The method to develop a large diameter and ultrahigh pressure testing equipment is accompanied by low safety and high costs. In this paper, the ultrahigh pressure testing equipment for the environment simulation of deep-sea developed by pre-stressed steel wire-winding technology has been developed to overcome its limitations, and the device is currently under the highest working pressure in China. Meanwhile, it can monitor the environmental data in the cylinder and can achieve automatic control of lifting pressure. This paper briefly introduces the system components, the key technical problems and solutions in the development process. Finally, the typical experiment application of the equipment is introduced, which will provide beneficial reference for the development and application of experimental devices used to simulate ultrahigh pressure environment testing in the deep sea.
Keywords:pre-stressed steel wire-winding   ultrahigh pressure   testing equipment
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