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Effects of CVD Carbon on the Erosion Behavior of 5D Carbon-Carbon Composite in a Solid Rocket Motor

机译:CVD碳对固体火箭电动机5d碳 - 碳复合材料侵蚀行为的影响

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An experimental study was conducted to study the effects of chemical vapor deposition (CVD) carbon content on the erosion behavior of 5 direction (5D) carbon-carbon (C/C) composite in a solid rocket motor (SRM). A small SRM, which can compare the erosion performance of two samples under the same working conditions, was designed and tested. The erosion of the carbon-carbon composite ablative morphology at macroscale and microscale was obtained and analyzed. Results show that the average erosion rates of 1# and 2# samples are 0.35 mm/s and 0.45 mm/s, respectively, which means the erosion rate of the sample with high CVD carbon content is 22.2% times lower than the one with low CVD carbon content. During SRM operation, the fibers within fiber bundles and carbon rods are in a dispersive and integral state, respectively, thus carbon rods have a better anti-ablation capability, followed by fiber bundles and matrix in turn. As a result, a carbon rod will be positioned higher than the matrix and fiber bundles around. Furthermore, the ablation of fibers within fiber bundles and carbon rods, although they have significant differences in the ablation process, can both be described as a single fiber ablation. The oxidizing species react with the matrix, then with the CVD carbon and the fiber within a fiber bundle in turn, while they react with the matrix, the CVD carbon and the fiber within a carbon rod simultaneously. This shows that the increase in CVD carbon content will improve the ablation performance of C/C composite by protecting the fibers within the fiber bundles. The present study provides a fundamental understanding of the effect of CVD carbon on the ablation performance of C/C composite, serving as a reference for further design and optimizations of C/C composite.
机译:进行了实验研究以研究化学气相沉积(CVD)碳含量对固体火箭电动机(SRM)中的5方向(5d)碳 - 碳(C / C)复合材料的侵蚀行为的影响。小型SRM,设计并测试了在相同的工作条件下比较两个样品的侵蚀性能。获得并分析了Macroscale和Microscale的碳 - 碳复合烧蚀形态的腐蚀。结果表明,1#和2#样本的平均腐蚀速率分别为0.35mm / s和0.45mm / s,这意味着具有高CVD碳含量的样品的腐蚀速率比具有低的样品的余量为22.2%倍CVD碳含量。在SRM操作期间,纤维束和碳棒内的纤维分别处于分散和整体状态,因此碳棒具有更好的抗消融能力,然后依次具有纤维束和基质。结果,碳棒将定位高于矩阵和纤维束。此外,纤维在纤维束和碳棒中消融纤维,尽管它们在消融过程中具有显着差异,但既可以被描述为单纤维消融。氧化物种与基质反应,然后在纤维束内与CVD碳和纤维反应,同时它们与基质,CVD碳和纤维同时在碳棒内反应。这表明CVD碳含量的增加将通过保护纤维束内的纤维来改善C / C复合材料的消融性能。本研究提供了对CVD碳对C / C复合材料的消融性能的基本理解,作为进一步设计和优化C / C复合材料的参考。

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