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裂解制备Si-C-O梯度复合材料的热流密度计算 被引量:1

Calculation of Heat Flux for Manufacturing Si-C-O FGM by Pyrolyzing the Surface of Polysilicone Preceramic
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摘要 对聚硅氧陶瓷先驱体表面加载高密度热流时裂解过程进行了分析,并对温度梯度计算模型进行了合理设计;对聚硅氧树脂SAR-2的裂解进行了DSC-TG分析实验,测试了先驱体及转化陶瓷与计算有关的物性参数。最后对表面裂解制备Si-C-O梯度复合材料所需热流密度进行了优化计算。结果表明:热流密度q=600kW·m-1,加热时间t=2-4s为制备梯度复合材料的最佳工艺参数。 The pyrolytic process was analyzed, and the calculation model was designed when heating the surface of polysilicone preceramic (SAR-2) by intensive heat flux. The pyrolytic process and the weight loss of pyrolyzing SAR-2 were tested by DSC-TG test, and the parameters were also measured in order to calculate the temperature gradient. The calculation results show that the most suitable heat flux for manufacturing Si-C-O FGM is 600 kw·m^-2 with heating time of 2-4s.
出处 《济南大学学报(自然科学版)》 CAS 2005年第3期204-206,共3页 Journal of University of Jinan(Science and Technology)
基金 国家自然科学基金资助项目(50171049)
关键词 热流密度 陶瓷梯度 复合材料 聚硅氧树脂 heat flux FGM composite polysilicone
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