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Infra-red and vibration tests of hybrid ablative/ceramic matrix technological breadboards for earth re-entry thermal protection systems

机译:用于地球再入热保护系统的混合烧蚀/陶瓷矩阵技术面包板的红外和振动试验

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摘要

A new thermal protection system for atmospheric earth re-entry is proposed. This concept combines the advantages of both reusable and ablative materials to establish a new hybrid concept with advanced capabilities. The solution consists of the design and the integration of a dual shield resulting on the overlapping of an external thin ablative layer with a Ceramic Matrix Composite (CMC) thermo-structural core. This low density ablative material covers the relatively small heat peak encountered during re-entry the CMC is not able to bear. On the other hand the big advantage of the CMC based TPS is of great benefit which can deal with the high integral heat for the bigger time period of the re-entry. To verify the solution a whole testing plan is envisaged, which as part of it includes thermal shock test by infra-red heating (heating flux up to 1 MW/m2) and vibration test under launcher conditions (Volna and Ariane 5). Sub-scale tile samples (100×100 mm2) representative of the whole system (dual ablator/ceramic layers, insulation, stand-offs) are specifically designed, assembled and tested (including the integration of thermocouples). Both the thermal and the vibration test are analysed numerically by simulation tools using Finite Element Models. The experimental results are in good agreement with the expected calculated parameters and moreover the solution is qualified according to the specified requirements.
机译:提出了一种新的热保护系统,用于大气接地重新入口。该概念结合了可重用和消融材料的优势,以具有高级功能的新混合概念。该解决方案包括设计和整合双屏蔽,从而导致外部薄烧蚀层与陶瓷矩阵复合物(CMC)热结构芯的重叠。该低密度烧蚀材料覆盖在重新进入期间遇到的相对较小的热峰值,CMC无法承受。另一方面,基于CMC的TPS的大优点是具有很大的益处,可以处理重新进入的更大时间段的高积分热量。为了验证解决方案,设想了整个测试计划,其一部分包括通过红外线加热(加热通量高达1 MW / M2)的热冲击试验和发射条件下的振动试验(Volna和Ariane 5)。专门设计,组装和测试的整个系统(双烧蚀器/陶瓷层,绝缘,脱扣)的子尺度瓷砖样本(100×100mm2)表示,组装和测试(包括热电偶的集成)。通过使用有限元模型通过模拟工具进行数字地分析热量和振动测试。实验结果与预期计算参数吻合良好,此外,根据规定的要求,该解决方案是合格的。

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