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Application of Video Image Correlation Techniques to the Space Shuttle External Tank Foam Materials

机译:视频图像相关技术在航天飞机外舱泡沫材料中的应用

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摘要

Results that illustrate the use of a video-image-correlation-based displacement and strain measurement system to assess the effects of material nonuniformities on the behavior of the sprayed-on foam insulation (SOFI) used for the thermal protection system on the Space Shuttle External Tank are presented. Standard structural verification specimens for the SOFI material with and without cracks and subjected to mechanical or thermal loading conditions were tested. Measured full-field displacements and strains are presented for selected loading conditions to illustrate the behavior of the foam and the viability of the measurement technology. The results indicate that significant strain localization can occur in the foam because of material nonuniformities. In particular, elongated cells in the foam can interact with other geometric or material discontinuities in the foam and develop large-magnitude localized strain concentrations that likely initiate failures. Furthermore, some of the results suggest that continuum mechanics and linear elastic fracture mechanics might not adequately represent the physical behavior of the foam, and failure predictions based on homogeneous linear material models are likely to be inadequate.
机译:结果说明了使用基于视频图像相关的位移和应变测量系统来评估材料不均匀性对航天飞机外部热保护系统所用喷涂泡沫绝缘(SOFI)行为的影响坦克被提出。测试了具有和不具有裂纹并且经受机械或热负荷条件的SOFI材料的标准结构验证样本。给出了所选载荷条件下测得的全场位移和应变,以说明泡沫的行为和测量技术的可行性。结果表明,由于材料不均匀,泡沫中可能出现明显的应变局部化。特别地,泡沫中的细长孔可与泡沫中的其他几何或材料间断相互作用,并产生可能引发破坏的大幅度局部应变集中。此外,一些结果表明,连续力学和线性弹性断裂力学可能无法充分代表泡沫的物理行为,并且基于均质线性材料模型的破坏预测可能不足。

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