空间柔性充气结构分布式光纤裂纹损伤监测方法
作者:
作者单位:

1.南京航空航天大学机械结构力学及控制国家重点实验室,南京,210016;2.故障诊断与健康管理技术航空科技重点实验室,上海,201601;3.南京大学智能光传感与调控技术教育部重点实验室,南京,210093

作者简介:

通讯作者:

曾捷,男,副教授,硕士生导师,E-mail: zj2007@nuaa.edu.cn。

中图分类号:

TP212

基金项目:

国家自然科学基金-联合基金 U1537102;上海航天科技创新基金 SAST2018-015;航空科学基金 20170252004;江苏省重点研发计划产业前瞻与共性关键技术竞争 BE2018047国家自然科学基金-联合基金 (U1537102)资助项目;上海航天科技创新基金 (SAST2018-015) 资助项目;航空科学基金 (20170252004) 资助项目;江苏省重点研发计划产业前瞻与共性关键技术竞争(BE2018047) 资助项目。


Monitoring Method for Crack Damage of Space Flexible Inflatable Structure Based on Distributed Optical Fiber Sensor
Author:
Affiliation:

1.State Key Laboratory of Mechanics and Control of Mechanical Structures, Nanjing University of Aeronautics & Astronautics, Nanjing, 210016, China;2.Aviation Key Laboratory of Science and Technology on Fault Diagnosis and Health Management,Shanghai, 201601, China;3.Key Laboratory of Intelligent Optical Sensing and Manipulation, Ministry of Education,Nanjing University, Nanjing, 210093, China

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    摘要:

    空间柔性充气结构作为一种航天器基本组成单元,在气闸舱、空间居住舱等领域受到越来越多关注。针对此类结构损伤状态的智能辨识,对于目前正在开展的深空与星际探测具有重要意义。为此,本文提出了一种基于分布式光纤传感器的空间充气结构裂纹损伤实时监测技术。借助ANSYS有限元分析方法,数值模拟得到含裂纹损伤的充气结构模型在不同内压载荷作用下的应变响应与分布规律。在此基础上,通过由芳纶编织而成的柔性充气结构表面布置分布式光纤光栅传感网络,实时采集不同位置与程度损伤对应的表面应变分布与变化信息。提取能够表征结构裂纹特征的辨识参量,建立光纤传感器应变响应差值与裂纹损伤长度之间的关系模型,实现裂纹损伤区域定位与损伤长度识别。研究结果表明,本文所提方法具有非视觉测量、实时性好以及多种功能复用等优点,能够为未来空间柔性充气结构服役状态辨识与在轨快速维护提供技术支撑。

    Abstract:

    As a new type of aerospace structure, flexible inflatable space structure has attracted more and more attention in the aerospace field such as air lock cabin and space residence cabin. Intelligent damage identification for such structures is of great significance for deep space and interstellar detection. Therefore, a real-time damage monitoring technology for space inflatable structures based on distributed optical fiber sensors is proposed in the paper. With the help of ANSYS finite element analysis method, the strain response and distribution law of the structure with cracks under internal pressure are obtained by numerical simulation. On the basis, a distributed fiber Bragg grating sensing system is arranged on the surface of the flexible inflatable structure braided by aramid fibers to collect real-time information of the surface strain distribution and change of the inflatable structure corresponding to different locations and degrees of damage. The identification parameters which characterize the crack characteristics of structures are extracted, and the corresponding relationship model between the strain response difference of sensors and the crack damage length is established to locate the crack damage area and identify the damage length. Results show that the proposed method has the advantages of non-visual measurement, good real-time performance and multi-function reuse, and can provide technical support for service state identification and on-orbit maintenance of space flexible inflatable structures in the future.

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引用本文

何弯弯,曾捷,夏裕彬,卢李,顾欣,张旭苹,陈浩远.空间柔性充气结构分布式光纤裂纹损伤监测方法[J].南京航空航天大学学报,2019,51(3):297-304

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  • 收稿日期:2019-01-12
  • 最后修改日期:2019-03-01
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  • 在线发布日期: 2019-10-08
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