罗楚养,蒋嘉瑞,程功,黄益民,蔡钰伟,李晓升.空空导弹热防护性能测试技术研究现状[J].装备环境工程,2024,21(12):58-70. LUO Chuyang,JIANG Jiarui,CHENG Gong,HUANG Yimin,CAI Yuwei,LI Xiaosheng.Research Status of Thermal Protection Performance Test Technology for Airborne Missiles[J].Equipment Environmental Engineering,2024,21(12):58-70. |
空空导弹热防护性能测试技术研究现状 |
Research Status of Thermal Protection Performance Test Technology for Airborne Missiles |
投稿时间:2024-07-01 修订日期:2024-09-08 |
DOI:10.7643/issn.1672-9242.2024.12.008 |
中文关键词: 热防护 氧-乙炔/等离子烧蚀 激光辐照 石英灯辐射 高焓风洞中图分类号:TJ760 文献标志码:A 文章编号:1672-9242(2024)12-0058-13 |
英文关键词:thermal protection oxyacetylene/plasma ablation laser irradiation quartz lamp radiation high enthalpy wind tunnel |
基金项目:高能束流加工技术国家级重点实验室基金(KZ571801);中央高校基本科研业务费专项资金(2232022D-28);上海市轻质结构复合材料重点实验室基金(2232021A4-02);航空科学基金(20200001012004) |
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Author | Institution |
LUO Chuyang | Center for Civil Aviation Composites, Donghua University, Shanghai 201620, China |
JIANG Jiarui | Center for Civil Aviation Composites, Donghua University, Shanghai 201620, China |
CHENG Gong | China Airborne Missile Academy, Henan Luoyang 471009, China |
HUANG Yimin | China Airborne Missile Academy, Henan Luoyang 471009, China |
CAI Yuwei | Center for Civil Aviation Composites, Donghua University, Shanghai 201620, China |
LI Xiaosheng | China Airborne Missile Academy, Henan Luoyang 471009, China |
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中文摘要: |
详细梳理了当前空空导弹热防护性能测试领域的四大主流技术,包括氧-乙炔/等离子烧蚀技术、激光辐照技术、石英灯辐射技术以及高焓风洞技术。这些技术各具特点,在模拟真实飞行条件、评估热防护效果方面发挥着不可替代的作用。对每种技术的研究现状进行了深入剖析,展望了未来可能的发展趋势和潜在的关键技术,可以对空空导弹热防护性能测试技术有一个更加全面、深入的了解,为相关领域的研究和实践提供有益的参考和借鉴。 |
英文摘要: |
The work aims to comprehensively review the current state of four mainstream technologies in the thermal protection performance test of airborne missiles, including oxyacetylene/plasma erosion technology, laser irradiation technology, quartz lamp radiation technology, and high enthalpy wind tunnel technology. Each technology has unique characteristics and plays an indispensable role in simulating actual flight conditions and evaluating the effectiveness of thermal protection. The in-depth analysis is conducted to the research status of each technology and the potential future developments and key technologies are prospected. Through this review, a more comprehensive and in-depth understanding of airborne missile thermal protection performance test technologies is obtained, providing valuable references and guidance for related research and practical applications. |
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