通过热振动实验提取典型 TPS 板的时变动态特性

IF 1.5 4区 工程技术 Q3 ENGINEERING, MECHANICAL
C. Xue, Y. Li, H. Ma, Q. Fei
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引用次数: 0

摘要

在热振动环境下提取航空航天结构的时变动态特性既困难又复杂,因为虽然外部载荷是恒定的,但结构的材料特性是波动的。首先,基于有限条带法更新了适用于时变系统的复合板模型。随后,设计了一套用于实现高精度数据测量的热振动实验系统,初步实验证明了实验方法的有效性。最后,研究了典型热防护系统板的时变动态特性。结果表明,固有频率随加热时间呈下降趋势,当结构达到临界膨胀温度时,固有频率将急剧下降,而阻尼特性则呈现不利趋势。此外,为了证明更新模型的适用性和准确性,还对本模型和递归子空间法进行了比较。本文旨在为评估恶劣飞行环境下航空航天结构的稳定性提供一些参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Extracting Time-Varying Dynamic Characteristics of a Typical TPS Plate via Thermal-Vibration Experiment

Extracting Time-Varying Dynamic Characteristics of a Typical TPS Plate via Thermal-Vibration Experiment

Extracting time-varying dynamic characteristics of an aerospace structure under thermal-vibration environment is difficult and complicated since the material properties of the structure fluctuate although the external load is constant. Initially, a composite plate model applied for time-varying system is updated based on finite strip method. Afterward, a thermal-vibration experimental system for realizing high-precision data measurement is designed, and the preliminary experiment certified the validity of experimental method. Finally, the time-varying dynamic characteristics of a typical thermal protective system plate is researched. Results show that the natural frequencies take a downward tendency with respect to heating time, and will undergo a dramatic decrease when the structure reaches the critical bulking temperature, while the damping characteristic shows an adverse trend. In addition, for certifying the applicability and accuracy of the updated model, comparisons between present model and recursive subspace method are conducted. The purpose of this paper is to provide some references on evaluating stability for aerospace structures under severe flight environment.

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来源期刊
Experimental Techniques
Experimental Techniques 工程技术-材料科学:表征与测试
CiteScore
3.50
自引率
6.20%
发文量
88
审稿时长
5.2 months
期刊介绍: Experimental Techniques is a bimonthly interdisciplinary publication of the Society for Experimental Mechanics focusing on the development, application and tutorial of experimental mechanics techniques. The purpose for Experimental Techniques is to promote pedagogical, technical and practical advancements in experimental mechanics while supporting the Society''s mission and commitment to interdisciplinary application, research and development, education, and active promotion of experimental methods to: - Increase the knowledge of physical phenomena - Further the understanding of the behavior of materials, structures, and systems - Provide the necessary physical observations necessary to improve and assess new analytical and computational approaches.
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