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TMF tests: Optical heating, thermography and deformation measurement of combustion chamber wall structures

机译:TMF测试:燃烧室壁结构的光学加热,热成像和变形测量

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Optical measurement possibilities for actively cooled thermally loaded wall structures of rocket engines by means of Thermo-Mechanical Fatigue (TMF) tests - aiming at the creation of validation data for CFD, thermal, structural and life time analyses are discussed in this paper. During a TMF test, only a small section of the hot gas wall of the real engine (the so called TMF panel) is tested. For such a TMF panel, realistic cooling conditions similar to a full scale rocket engine are chosen. The 2d measurement of the thermal field of the heat loaded structure provides (together with the measurement of the temperature, pressure and mass flow rate of the coolant of the TMF panel) data for the combined validation of the CFD analysis of the coolant flow and the thermal analysis of the wall structure. The measurement of the deformation of the thermally loaded structure provides (together with the already determined temperature distribution and the above mentioned pressure measurements of the cooling channels) data for the validation of the structural analysis of the thermally loaded structure. Counting the number of laser loading cycles (laser on-off) until the TMF panel fails (by cracks appearing on the laser loaded side of the cooling channels) provides data for the validation of (either post processing or damage parameter based) life time analyses of thermally loaded structures.
机译:通过热力机械疲劳(TMF)测试,对主动冷却的火箭发动机热载壁结构进行光学测量的可能性-本文旨在为CFD,热,结构和寿命分析创建验证数据。在TMF测试期间,仅测试真实发动机的热气壁的一小部分(所谓的TMF面板)。对于这种TMF面板,选择类似于全尺寸火箭发动机的实际冷却条件。热负荷结构的热场的二维测量结果(与TMF面板冷却剂的温度,压力和质量流率的测量值一起)提供了数据,用于对冷却剂流和CFD的CFD分析进行组合验证。墙体结构的热分析。热负荷结构的变形的测量提供(连同已经确定的温度分布和冷却通道的上述压力测量一起)数据,用于验证热负荷结构的结构分析。计算直到TMF面板失效(由于冷却通道的激光加载侧出现裂纹)为止的激光加载循环次数(激光开-关),可提供用于验证寿命分析的数据(基于后处理或基于损坏参数)热载结构。

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