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航空装备超声原位无损检测技术研究进展

张伟 樊俊铃 詹绍正 杨鹏飞 贾文博

航空材料学报2025,Vol.45Issue(6):1-12,12.
航空材料学报2025,Vol.45Issue(6):1-12,12.DOI:10.11868/j.issn.1005-5053.2025.000019

航空装备超声原位无损检测技术研究进展

Research progress of ultrasonic in-situ nondestructive testing technology for aircraft structure

张伟 1樊俊铃 1詹绍正 1杨鹏飞 1贾文博1

作者信息

  • 1. 中国飞机强度研究所强度与结构完整性全国重点实验室,西安 710065
  • 折叠

摘要

Abstract

Damage detection is a critical link of aviation equipment development,field operation and maintenance,which directly affects the development process and service safety of aircraft structure.In recent years,domestic and foreign scholars and scientific research institutions have carried out a lot of research works in the field of ultrasonic nondestructive testing.Based on this,this paper,guided by the needs of damage detection in the development and operation of aviation equipment,briefly analyzes the characteristics and requirements of typical structural damage of aviation equipment and in-situ detection.This paper focuses on summarizing the latest research progress of ultrasonic theories and methods,advanced detection sensor designs and special detection device research and development.Furthermore,incorporating new issues,ideas and directions emerging from technological research and engineering practice,this paper summarizes and forecasts the main challenges and future development trends in areas such as damage detection technologies for heterogeneous materials,transducer design methods for complex-shaped structures,and the equipment research and development and engineering application of new non-contact testing devices.

关键词

航空装备/结构损伤/原位无损检测/超声检测理论/传感器设计/装置研发

Key words

aviation equipment/structural damage/in-situ nondestructive testing/ultrasonic detection theory/sensor design/equipment research and development

分类

通用工业技术

引用本文复制引用

张伟,樊俊铃,詹绍正,杨鹏飞,贾文博..航空装备超声原位无损检测技术研究进展[J].航空材料学报,2025,45(6):1-12,12.

基金项目

中国科协青年人才托举工程(2022QNRC001) (2022QNRC001)

强度与结构完整性全国重点实验室自主研究课题(LSSIZZYJ202403) (LSSIZZYJ202403)

企业创新青年人才托举计划(2021-1-2) (2021-1-2)

航空科学基金(20200009023004) (20200009023004)

航空材料学报

OA北大核心

1005-5053

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