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High-Temperature Creep Properties of SiC Fibers with Different Compositions

机译:不同组成的SiC纤维的高温蠕变性能

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Silicon carbide (SiC) fiber?reinforced SiC matrix (SiC/SiC) composites have been widely investigated for potential fusion reactor applications. In this present investigation, the high-temperature creep performance of five types of SiC fibers is evaluated and microstructural analysis is performed. The creep behavior of the fibers was assessed by the bend stress relaxation method at various applied strains at 1500?C and 1700?C. The fibers tested include developmental-grade fibers with different residual silicon amounts (similar to 0%, 2% to 3%, and 5% to 6%) fabricated by laser chemical vapor deposition at Free Form Fibers. Generally, the creep behavior of the Free Form (FF) fibers was similar to Hi-Nicalon Type S and/Tyranno-SA SiC fibers currently used for fabrication of SiC/SiC composites for fusion applications. However, all FF fibers exhibited the formation of pores after the creep tests at 1700?C regardless of residual silicon amount, which can be improved by further development via optimization of the composition and microstructure.
机译:碳化硅(SiC)纤维增强的SiC基体(SiC / SiC)复合材料已被广泛研究用于潜在的聚变反应堆应用。在本研究中,评估了五种SiC纤维的高温蠕变性能,并进行了微结构分析。通过弯曲应力松弛法在1500?C和1700?C的各种施加应变下评估纤维的蠕变行为。测试的纤维包括在自由形态纤维上通过激光化学气相沉积法制造的具有不同残留硅量(近似于0%,2%至3%和5%至6%)的发育级纤维。通常,自由形式(FF)纤维的蠕变行为类似于Hi-Nicalon Type S和/ Tyranno-SA SiC纤维,目前用于制造融合应用的SiC / SiC复合材料。但是,所有FF纤维在1700°C的蠕变测试后均显示出孔的形成,而与残余硅量无关,这可以通过优化组成和微观结构进一步开发而得到改善。

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