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Digital light processing of SiC ceramic from allylhydridopolycarbosilane with limited acrylate monomers

机译:烯丙烯酸酯单体烯丙基氢聚碳硅烷对SiC陶瓷进行数字光加工

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? 2022 Elsevier Ltd and Techna Group S.r.l.Digital light processing of ceramic precursor was used to prepare SiC rich ceramic parts in this study. In order to achieve appropriate light curing rate, the ceramic precursor allylhydropolycarbosilane (LHBPCS) was mixed with acrylate monomers tripropylene glycol diacrylate and trimethylolpropane triacrylate. The content of acrylate monomers was optimized to increase the ceramic yield and reduce the shrinkage during pyrolysis. According to the results of thermogravimetric analysis and photolithography experiment, 15 wt acrylate monomers was appropriate. 330 mJ/cm2 UV irradiation dose was selected for every layer with a thickness of 25 μm, and green bodies with different shapes were successfully printed. During pyrolysis, these printed parts changed from transparent yellow to black accompanying uniform shrinkage. At 1000 °C, the shrinkage was 24.0–26.0, and crack-free SiC rich ceramic parts with density of 2.11 g/cm3 and chemical formula of SiC1.31O0.26 were obtained.
机译:?2022 Elsevier Ltd 和 Techna Group S.r.l.本研究采用陶瓷前驱体的数字光处理制备富碳化硅陶瓷部件。为了达到适当的光固化速率,将陶瓷前驱体烯丙基氢聚碳硅烷(LHBPCS)与丙烯酸酯单体三丙二醇二丙烯酸酯和三羟甲基丙烷三丙烯酸酯混合。优化丙烯酸酯单体含量,提高陶瓷收率,降低热解过程中的收缩率。根据热重分析和光刻实验结果,以15 wt%丙烯酸酯单体为宜。每层厚度为25 μm,选择330 mJ/cm2的紫外照射剂量,成功打印出不同形状的坯体。在热解过程中,这些打印部件从透明的黄色变为黑色,并伴有均匀的收缩。在1000 °C下,收缩率为24.0–26.0%,获得了密度为2.11 g/cm3、化学式为SiC1.31O0.26的无裂纹富SiC陶瓷零件。

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