航天器用材料应用验证技术体系  

Application Verification Technology System for Aerospace Advance Materials

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作  者:高鸿[1] 邢焰[1] 孙明[1] 余斌 李岩[1] 刘泊天 吴冰 于利夫 樊彦艳 GAO Hong;XING Yan;SUN Ming;YU Bin;LI Yan;LIU Botian;WU Bing;YU Lifu;FAN Yanyan(China Aerospace of Space Technology(CAST),Beijing 100094,China;China Aerospace Science and Technology Corporation(CASC),Beijing 100048,China)

机构地区:[1]中国空间技术研究院,北京100094 [2]中国航天科技集团公司,北京100048

出  处:《材料导报》2022年第22期59-63,共5页Materials Reports

摘  要:本文基于钱学森的“综合集成方法论”,结合我国航天器材料的研制及应用特点,阐述了应用验证技术体系基本原理,并总结工程实践经验,提出建设要点。该体系通过材料特性表征及应用情况的宏观与微观研究,利用试验验证、专家决策支持、计算仿真、归纳演绎、信息处理等方法,形成了多指标评价、多角度分析、综合评判的材料工程应用质量控制系统,发挥了人机结合、定性与定量结合、理论与实践结合以及多学科融合的系统工程优势,为我国航天装备自主发展奠定基础。Based on Qian Xuesen’s “comprehensive integration methodology”, and combined with the characteristics of spacecraft materials development and application in China, the basic principles of application verification technology are described in this paper. The new material engineering application quality control system has been formed with multi-index evaluation, multi-angle analysis and comprehensive evaluation by means of macro and micro material research of material characterization and application, using the methods of experimental verification, expert decision support, computational simulation, induction and deduction, information processing and so on. The system gave full play to the advantages of man-machine integration, qualitative and quantitative integration, theory and practice integration and multidisciplinary integration of systems engineering, laying a quality assurance foundation for the independent development of China’s space equipment.

关 键 词:航天器材料 应用验证 技术体系 

分 类 号:TB302[一般工业技术—材料科学与工程]

 

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