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Repair of SiC coating on carbon/carbon composites by laser cladding technique

机译:激光熔覆技术修复碳/碳复合材料的SiC涂层

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摘要

A slurry-based laser cladding technique was used to repair the SiC coated carbon/carbon composites. The oxidation resistance of repaired samples at 1773 K for 10 h was investigated. Samples were characterized by X-ray diffraction pattern, scanning electron microscopy and confocal microscope; its interface characteristics were studied with scratch, thermal shock and internal friction tests. The results show that there is no obvious interface between the newly-formed coating and the original coating, and the newly-formed coating has a much smoother surface. With optimizing parameters, the new coating of 180 mu m thickness possesses refined grains, flat surface, dense microstructure and good thermal stability. The number of internal defects in the samples repaired by laser cladding drops, compared with the damaged/undamaged samples. The weight loss of repaired samples decreases by 64.8% in comparison with the damaged ones, and it is almost the same with the undamaged samples according to a test of anti-oxidation behaviors. This is attributed to the enhanced oxidation resistance of dense newly-formed coating, which makes carbon/carbon composites well protected.
机译:使用基于浆料的激光覆层技术来修复SiC涂覆的碳/碳复合材料。研究了修复的样品在1773k 10小时的氧化抗性。通过X射线衍射图,扫描电子显微镜和共聚焦显微镜表征样品;通过划伤,热冲击和内部摩擦试验研究了其界面特性。结果表明,新形成的涂层和原始涂层之间没有明显的界面,新形成的涂层具有更平滑的表面。通过优化参数,厚度为180μm的新涂层具有精制晶粒,平坦表面,致密的微观结构和良好的热稳定性。与损坏/未损坏的样品相比,通过激光包层滴进行的样品中的内部缺陷的数量。与受损的损伤相比,修复样品的重量损失降低了64.8%,并且根据抗氧化行为的测试,与未损坏的样品几乎相同。这归因于致密的新形成涂层的增强抗氧化性,使得碳/碳复合材料良好保护。

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