航空飞行器结构强度物理试验技术成熟度评价方法
收稿日期: 2024-03-18
修回日期: 2024-05-06
录用日期: 2024-05-27
网络出版日期: 2024-06-07
基金资助
国家级项目
Readiness assessment system method of physical testing of aircraft structural strength
Received date: 2024-03-18
Revised date: 2024-05-06
Accepted date: 2024-05-27
Online published: 2024-06-07
Supported by
National Level Project
邹鹏 , 杨钧超 , 陈向明 , 刘小川 . 航空飞行器结构强度物理试验技术成熟度评价方法[J]. 航空学报, 2024 , 45(24) : 230414 -230414 . DOI: 10.7527/S1000-6893.2024.30414
There is a lack of clear and quantitative technology for readiness assessment of physical tests required for the strength verification process of aircraft structures both domestically and internationally. This paper conducts research on the readiness assessment system of physical testing of aircraft structural strength. A framework for evaluating the readiness of physical testing technology for aircraft structural strength is constructed. The key/system technology connotations, readiness level classification methods/determination methods, level conditions/assessment method, and evaluation processes for physical testing of aircraft structural strength are defined, and typical application cases are given. The technical system and method proposed in this article are applicable to the quantitative evaluation of the readiness of key physical testing technologies and system technologies in the verification process of aircraft structural strength, providing methodological support for structural strength professionals to clearly grasp relevant technical readiness levels and plan future development directions.
Key words: aircraft; structure strength; physical test; technical readiness; assessment system
1 | 陈炜钢, 王静, 刘沃野, 等. 美军采办项目技术成熟度等级计算器简介[J]. 项目管理技术, 2011, 9(9): 104-109. |
CHEN W G, WANG J, LIU W Y, et al. Brief introduction of technical maturity grade calculator for US military acquisition projects[J]. Project Management Technology, 2011, 9(9): 104-109 (in Chinese). | |
2 | 邢晨光, 程文渊, 宋刚. 国内外技术成熟度评价相关标准规范对比分析研究[J]. 军事运筹与系统工程, 2020, 34(1): 74-80. |
XING C G, CHENG W Y, SONG G. Comparative analysis of domestic and foreign standards and specifications for technology maturity evaluation[J]. Military Operations Research and Systems Engineering, 2020, 34(1): 74-80 (in Chinese). | |
3 | 吴琼, 汪送. 非致命武器装备系统成熟度评估研究综述[J]. 兵器装备工程学报, 2020, 41(10): 10-15. |
WU Q, WANG S. Summary of research on system maturity assessment of non-lethal weapon equipment[J]. Journal of Ordnance Equipment Engineering, 2020, 41(10): 10-15 (in Chinese). | |
4 | 谢梅芳, 杨建军. 基于熵权的装备研制技术成熟度评估方法[J]. 武汉理工大学学报(信息与管理工程版), 2010, 32(4): 673-676. |
XIE M F, YANG J J. Evaluation method of technology readiness level in weapon development based on entropy-weight method[J]. Journal of Wuhan University of Technology (Information&Management Engineering), 2010, 32(4): 673-676 (in Chinese). | |
5 | 田陇豫, 荆涛, 刘磊. 基于关键技术贡献的系统成熟度评价算法研究[J]. 计算机仿真, 2011, 28(10): 28-30, 56. |
TIAN L Y, JING T, LIU L. Study on algorithm for system readiness assessment based on contributions of critical techniques[J]. Computer Simulation, 2011, 28(10): 28-30, 56 (in Chinese). | |
6 | 夏炜, 邓平煜, 陈稀亮. 基于软件关键技术元素的技术成熟度评价[J]. 航空电子技术, 2012, 43(5): 36-38. |
XIA W, DENG P Y, CHEN X L. Technology maturity evaluation based on key technology elements of software[J]. Avionics Technology, 2012, 43(5): 36-38 (in Chinese). | |
7 | 魏法杰, 姜姗. 基于熵权的复杂装备研制过程技术成熟度评价研究[J]. 中国管理科学, 2012, 20(S2): 911-915. |
WEI F J, JIANG S. TRL evaluation of R&D process of complex equipment based on entropy method[J]. Chinese Journal of Management Science, 2012,20 (S2): 911-915 (in Chinese). | |
8 | 吴诗辉, 解江, 刘晓东, 等. 装备研制项目的模糊挣值管理方法[J]. 航空学报, 2017, 38(2): 320258. |
WU S H, XIE J, LIU X D, et al. Method of fuzzy earned value management for weapon equipment development project[J]. Acta Aeronautica et Astronautica Sinica, 2017, 38(2): 320258 (in Chinese). | |
9 | 谢伟华, 侯俊杰, 章威. 基于技术成熟度的技术价值评估方法研究[J]. 今日科苑, 2018(7): 49-56. |
XIE W H, HOU J J, ZHANG W. Research on technology value evaluation method based on technology maturity [J]. Today Science Park, 2018 (7): 49-56 (in Chinese). | |
10 | 司莙鹏, 牟晖, 田迪, 等. 复杂产品项目管理中技术成熟度等级的梯度化发展研究[J]. 航空精密制造技术, 2019, 55(6): 40-44. |
SI J P, MOU H, TIAN D, et al. Research on gradient development of technology readiness level in management of complex product projects[J]. Aviation Precision Manufacturing Technology, 2019, 55(6): 40-44 (in Chinese). | |
11 | 李亮, 王婷婷, 初洪宇, 等. 基于技术成熟度的关键技术攻关策划研究与实践[J]. 导弹与航天运载技术, 2022(4):143-148. |
LI L, WANG T T, CHU H Y, et al. Research and practice of key technology breakthrough planning based on technology readiness assessment [J]. Missiles and Space Vehicles, 2022 (4): 143-148 (in Chinese). | |
12 | 初洪宇, 谢飞强, 林萌, 等. 基于技术成熟度的重大工程技术风险分析与控制方法研究[J]. 航天工业管理, 2022(9): 105-109. |
CHU H Y, XIE F Q, LIN M, et al. Research on risk analysis and control method of major engineering technology based on technology maturity[J]. Aerospace Industry Management, 2022(9): 105-109 (in Chinese). | |
13 | 张雪莹, 赖来源, 曾庆彬, 等. 基于模糊评价的智能用电新技术成熟度模型[J]. 广东电力, 2022, 35(3): 69-78. |
ZHANG X Y, LAI Y Y, ZENG Q B, et al. Research on maturity model of new intelligent power consumption technology based on fuzzy evaluation[J]. Guangdong Electric Power, 2022, 35 (3): 69-78 (in Chinese). | |
14 | SAUSER B, RAMIREZ-MARQUEZ J E, MAGNAYE R, et al. A systems approach to expanding the technology readiness level within defense acquisition[R]. International Journal of Defense Acquisition Management, 2008. |
15 | GOVE R. Development of an integration ontology for systems operational effectiveness[D]. Hoboken: Stevens Institute of Technology, 2007. |
16 | SAUSER B, GOVE R, FORBES E, et al. Integration maturity metrics: Development of an integration readiness level[J]. Information Knowledge Systems Management, 2010, 9(1): 17-46. |
17 | 中国人民解放军总装备部. 装备技术成熟度等级划分及定义: GJB 7688-2012[R]. 北京: 中国人民解放军总装备部, 2012. |
Chinese People’s Liberation Army General Armament Department. Equipment technology readiness level classification and definition: GJB 7688-2012[R]. Beijing: Chinese People’s Liberation Army General Armament Department, 2012 (in Chinese). | |
18 | 中国人民解放军总装备部. 装备技术成熟度评价程序:GJB 7689-2012[R]. 北京: 中国人民解放军总装备部,2012. |
Chinese People’s Liberation Army General Armament Department. Equipment technology readiness evaluation procedure: GJB 7689-2012[R]. Beijing: Chinese People’s Liberation Army General Armament Department, 2012 (in Chinese). | |
19 | 陈亚莉. 技术成熟度评估在航空材料开发中的应用[J]. 航空制造技术, 2010, 53(14): 62-65. |
CHEN Y L. Application of technology readiness assessment in aeronautical material development[J]. Aeronautical Manufacturing Technology, 2010, 53(14): 62-65 (in Chinese). | |
20 | 朱江辉, 孙勇军, 周占廷. 技术成熟度评估在飞行试验中的应用[J]. 飞行力学, 2015, 33(3): 193-195+204. |
ZHU J H, SUN Y J, ZHOU Z T. Application of technology readiness assessment in flight test[J]. Flight Dynamics, 2015,33 (3): 193-195+204 (in Chinese). | |
21 | 李林, 卢嘉晨. 民机试飞技术成熟度评估标准化实践[J]. 中国标准化, 2016(22): 218-219. |
LI L, LU J C. Standardization of civil aircraft flight test technology maturity assessment practice[J]. China Standardization, 2016(22): 218-219 (in Chinese). | |
22 | 金慧萍, 孙杨慧, 刘晓松, 等. 技术成熟度在航空发动机研制中的应用研究[J]. 航空动力, 2018 (4): 58-62. |
JIN H P, SUN Y H, LIU X S, et al. Application of technical readiness for aero engine development[J]. Aviation Power, 2018 (4): 58-62 (in Chinese). | |
23 | 刘庆东, 史妍妍, 崔洋, 等. 航空发动机传动系统技术成熟度评价方法的应用[J]. 航空发动机, 2019, 45(1): 92-96. |
LIU Q D, SHI Y Y, CUI Y, et al. Application of technology readiness level evaluation method for aeroengine transmission system[J]. Aeroengine, 2019, 45(1): 92-96 (in Chinese). | |
24 | 刘宪德, 刘青春. 技术成熟度评价在飞行管理系统产品研发中的应用[J]. 航空电子技术, 2019, 50(1): 15-19. |
LIU X D, LIU Q C. Application of technology readiness assessment in the development of flight management system[J]. Avionics Technology, 2019, 50(1): 15-19 (in Chinese). | |
25 | 卢健, 杨天, 熊艳才, 等. 新材料技术成熟度等级划分与评估体系研究[J]. 中国金属通报, 2020(1): 111-112. |
LU J, YANG T, XIONG Y C, et al. Research on the classification and evaluation system of readiness level of new materials technology [J]. China Metal Bulletin, 2020 (1): 111-112 (in Chinese). | |
26 | 杨帅, 闫斐然. 基于航空材料技术成熟度评价基础的项目管理方法研究[J]. 中国新通信, 2021, 23(10): 135-136. |
YANG S, YAN F R. Research on project management method based on aviation material technology maturity evaluation[J]. China New Telecommunications, 2021, 23(10): 135-136 (in Chinese). | |
27 | 曹明, 黄金泉, 周健, 等. 民用航空发动机故障诊断与健康管理现状、挑战与机遇Ⅰ: 气路、机械和FADEC系统故障诊断与预测[J]. 航空学报, 2022, 43(9): 625573. |
CAO M, HUANG J Q, ZHOU J, et al. Current status, challenges and opportunities of civil aero-engine diagnostics & health management Ⅰ: Diagnosis and prognosis of engine gas path, mechanical and FADEC[J]. Acta Aeronautica et Astronautica Sinica, 2022, 43(9): 625573 (in Chinese). | |
28 | 王皓, 陈根良. 机器人型装备在航空装配中的应用现状与研究展望[J]. 航空学报, 2022, 43(5): 626128. |
WANG H, CHEN G L. Research progress and perspective of robotic equipment applied in aviation assembly[J]. Acta Aeronautica et Astronautica Sinica, 2022, 43(5): 626128 (in Chinese). | |
29 | 孙继鹏, 姜利祥, 李涛, 等. 技术成熟度评价在航天器地面环境试验中的应用[J]. 航天器环境工程, 2014, 31(4): 451-455. |
SUN J P, JIANG L X, LI T, et al. Application of technology readiness assessment in spacecraft ground environment test[J]. Spacecraft Environment Engineering, 2014, 31(4): 451-455 (in Chinese). | |
30 | 王婷婷, 李亮, 谢平, 等. 技术成熟度评价在航天系统工程中的应用研究[J]. 中国航天, 2017(9): 24-29. |
WANG T T, LI L, XIE P, et al. Research on the application of technology readiness assessment in aerospace systems engineering [J]. China Aerospace, 2017 (9): 24-29 (in Chinese). | |
31 | 王婷婷, 范宇, 鹿国华, 等. 航天工程技术成熟度评价研究与实践[J]. 中国航天, 2018(4): 34-38. |
WANG T T, FAN Y, LU G H, et al. Research and practice on technology maturity evaluation of aerospace engineering[J]. Aerospace China, 2018(4): 34-38 (in Chinese). | |
32 | 章威, 马宽, 党丽芳. 运载火箭技术成熟度评价方法研究[J]. 航天标准化, 2018(2): 1-6. |
ZHANG W, MA K, DANG L F. Research on evaluation method of technology maturity of launch vehicle[J]. Aerospace Standardization, 2018(2): 1-6 (in Chinese). | |
33 | 章威, 谢伟华, 包彦明, 等. 运载火箭技术成熟度评价应用研究[J]. 军民两用技术与产品, 2019(11): 36-41. |
ZHANG W, XIE W H, BAO Y M, et al. Research on application of technology maturity evaluation of launch vehicle[J]. Dual Use Technologies & Products, 2019(11): 36-41 (in Chinese). | |
34 | 田雪颖. 航天产品成熟度评价软件设计与实现[J]. 航天工业管理, 2022(4): 32-34. |
TIAN X Y. Design and implementation of maturity evaluation software for aerospace products[J]. Aerospace Industry Management, 2022(4): 32-34 (in Chinese). | |
35 | 刘栋梁, 顾继俊, 康凯, 等. 海洋工程装备行业技术成熟度的研究与应用[J]. 海洋石油, 2018, 38(2): 101-104, 116. |
LIU D L, GU J J, KANG K, et al. Study and application of technical maturity of marine engineering equipment industry[J]. Offshore Oil, 2018, 38(2): 101-104, 116 (in Chinese). | |
36 | 聂小云. 基于TRL的海洋能装备技术成熟度等级划分及评估研究[D]. 上海: 上海交通大学, 2018. |
NIE X Y. Research on classification and evaluation of technical maturity of marine energy equipment based on TRL[D].Shanghai: Shanghai Jiao Tong University, 2018 (in Chinese). | |
37 | 卢永进, 吴盛, 王玫. 基于成熟度的舰船厂所协同设计技术[J]. 机械, 2019, 46(11): 65-70. |
LU Y J, WU S, WANG M. Research on collaborative design technology between institute and shipyard based on maturity degree[J]. Machinery, 2019, 46 (11): 65-70 (in Chinese). | |
38 | 金伟晨. 技术成熟度模型建立及其海工应用[J]. 船舶物资与市场, 2019(9): 11-16. |
JIN W C. Establishment of technology maturity model and its offshore application[J]. Marine Equipment/Materials & Marketing, 2019(9): 11-16 (in Chinese). | |
39 | 任静, 胡晓轩, 杨山林, 等. 船舶制造技术成熟度评估系统[J]. 造船技术, 2021, 49(5): 71-76. |
REN J, HU X X, YANG S L, et al. Ship manufacturing technology maturity evaluation system[J]. Marine Technology, 2021, 49(5): 71-76 (in Chinese). | |
40 | 何磊, 程文渊, 宋刚, 等. 大型舰船海水管路系统技术成熟度评价研究[J]. 舰船科学技术, 2021, 43(9): 84-87. |
HE L, CHENG W Y, SONG G, et al. Technology readiness assessment for large ship seawater piping systems[J]. Ship Science and Technology, 2021, 43(9): 84-87 (in Chinese). | |
41 | 吴继承. 技术成熟度工具在核电型号研发中的应用探索[J]. 价值工程, 2022, 41(23): 57-60. |
WU J C. Application exploration of technology maturity tool in nuclear power model development[J]. Value Engineering, 2022, 41(23): 57-60 (in Chinese). | |
42 | 王静, 沈敏圣, 刘楠, 等. 大科学装置的成熟度评估方法探索[J]. 项目管理技术, 2019, 17(10): 59-62. |
WANG J, SHEN M S, LIU N, et al. Exploration of maturity evaluation method in scientific apparatus[J]. Project Management Technology, 2019, 17(10): 59-62 (in Chinese). | |
43 | 国家市场监督管理总局, 国家标准化管理委员会. 新材料技术成熟度等级划分及定义: [S]. 北京: 中国标准出版社, 2018. |
State Administration for Market Regulation, Standardization Administration of the People’s Republic of China. Classification and definition of the technology readiness levels for new materials: [S]. Beijing: Standards Press of China, 2018 (in Chinese). | |
44 | 国家市场监督管理总局, 国家标准化管理委员会. 航天工程技术成熟度评价指南: [S]. 北京: 中国标准出版社, 2021. |
State Administration for Market Regulation, Standardization Administration of the People’s Republic of China. Guideline of technology readiness assessment for aerospace engineering: [S]. Beijing: Standards Press of China, 2021 (in Chinese). |
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