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How to Tame the Aggressiveness of Liquid Silicon in the LSI Process

机译:如何驯服LSI过程中液体硅的侵略性

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Liquid Silicon Infiltration (LSI) is a technique to manufacture non-oxide ceramic matrix composites such as C/C-SiC or SiC/SiC. In the beginning of this three-step process, fiber preforms are shaped and impregnated with phenolic resins. After curing, the preforms are pyrolyzed to convert the polymer matrix to a porous carbon matrix. This porosity is then used to infiltrate liquid silicon by capillary forces. Simultaneously, an exothermic reaction of silicon and carbon creates a silicon carbide matrix. Generally the liquid silicon reacts with any carbon and even with SiC present in the form of fibers, fiber coatings or matrix. Therefore, especially the fibers must be protected from Si attack effectively. The morphology of silicon carbide was observed to be heavily driven by Ostwald ripening. This can be suppressed by the addition of boron to the melt. The initially formed SiC crystals in C/C-SiC composites are hereby prevented from grain coarsening, resulting in almost completely preserved C/C blocks. For the manufacture of SiC/SiC composites, the silicon boron alloys allow an effective preservation of the nanocrystalline SiC-fibers. Thus, the use of Si based B containing alloys helps effectively to moderate and control the aggressive reaction during LSI process.
机译:液体硅浸润(LSI)是制造非氧化物陶瓷基复合材料如C / C-SiC或SiC / SiC的技术。在这三步过程开始时,纤维预制件成形并用酚醛树脂浸渍。在固化后,使预制件热解凝成以将聚合物基质转化为多孔碳基质。然后使用这种孔隙率通过毛细力渗透液体硅。同时,硅和碳的放热反应产生碳化硅基质。通常,液体硅与任何碳反应,并且甚至用纤维,纤维涂料或基质形式存在SiC。因此,特别是纤维必须有效地保护来自SI攻击。观察到碳化硅的形态被Ostwald成熟的严重驱动。这可以通过向熔体添加硼来抑制。由此初始形成的C / C-SiC复合材料中的SiC晶体免受晶粒粗化,导致几乎完全保存的C / C块。为了制造SiC / SiC复合材料,硅硼合金允许有效地保存纳米晶体纤维。因此,使用基于Si的B含有合金有助于有效地在LSI过程中适度和控制侵袭性反应。

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