航天器复合材料结构强度与极限状态的计算与试验评估

V. Moskvichev, A. Lepikhin, A. Burov, S. Doronin, E. Moskvichev
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引用次数: 1

摘要

具有高强度和刚度特性的现代聚合物复合材料可以创建坚固,耐用和几何稳定的空间结构。为了扩大复合材料的应用范围,提高空间结构的竞争力,有必要进一步改进设计方法,广泛使用变形和断裂过程的多尺度计算建模。本文介绍了聚合物复合材料结构强度和尺寸稳定性的分析结果。研究了用于电力推进系统的金属复合材料高压油箱和用于空间天线和地面天线的精密反射器的设计。介绍了结构应力-应变和极限状态的实验和计算研究方法和结果。介绍了储罐结构的无损检测方法和手段、应力应变状态分析结果和全尺寸试验结果。给出了给定工作条件下反射体结构承载能力的广义估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Calculation and experimental assessment of the strength and limit states of composite structures for spacecraft
Modern polymer composite materials with high specific characteristics of strength and stiffness allow creating strong, durable and geometrically stable space structures. To expand the scope of application of composite materials and increase the competitiveness of space structures, it is necessary to further improve design methods with the widespread use of multiscale computational modeling of deformation and fracture processes. The paper presents the results of analysis on the strength and dimensional stability of structures made of polymer composites. A metal-composite high-pressure tank for electric propulsion systems and the design of precision reflectors for space- and ground-based antennas are considered. The methods and results of experimental and computational studies on the stress-strain and ultimate states of structures are described. The methods and means of non-destructive testing, the results of the analysis on the stress-strain state and full-scale tests of the tank structure are described. Generalized estimates of the load-carrying capacity of reflector structures under given operating conditions are given.
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