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Preparation and stereolithography of SiC ceramic precursor with high photosensitivity and ceramic yield

机译:具有高光敏性和陶瓷产量的SiC陶瓷前驱体的制备和立体刻度法

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Stereolithography of ceramic precursors is a valuable additive manufacturing technology for complex ceramic parts. In this study, a new SiC ceramic precursor-liquid hyperbranched polycarbosilane (LHBPCS) grafting acrylate group was synthesized by chlorinating some Si-H groups of LHBPCS with Cl-2 followed by reacting with hydroxyethyl acrylate. The reaction processes and structures of intermediate reactant and target product were confirmed by FT-IR and H-1 NMR. According to photolithography experiment and hardness test under UV light, the synthesized LHBPCS had high photo-curing activity. Thermogravimetric analysis indicated it also possessed high ceramic yield (the ceramic yield at 1000 degrees C was 74.4%). After shaping with stereolithography, defect-free green bodies could be got. When heated to 1000 degrees C, the transparent yellow green bodies transformed into black SiC rich ceramic parts and 18.3-25.1% linear shrinkage associated with the precursor-to-ceramic conversion was observed. Because the shrinkage in the pyrolysis stage was nearly isotropic and the shrinkage was lower than other reported data, no obvious deformation or crack was found in the pyrolyzed parts.
机译:陶瓷前体的立体化是复杂陶瓷部件的有价值的添加剂制造技术。在该研究中,通过用Cl-2氯化一些LHBPC的LHBPC组合成新的SiC陶瓷前体 - 液体超支化聚氨基硅烷(LHBPCS)接枝丙烯酸酯基。随后用丙烯酸羟乙酯反应。通过FT-IR和H-1 NMR确认中间反应物和靶产物的反应过程和结构。根据光刻试验和硬度测试在UV光下,合成的LHBPC具有高光固化活性。热重分析表明它也具有高陶瓷产率(1000℃的陶瓷产率为74.4%)。通过立体镀缩刻形成后,可以获得缺陷的绿色体。当加热至1000摄氏度时,透明的黄色生体转化为黑色SiC富陶瓷部件和与前体致陶瓷转化相关的线性收缩率为18.3-25.1%。因为热解阶段的收缩率几乎各向同性,并且收缩率低于其他报告的数据,因此在热解零件中没有发现明显的变形或裂缝。

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