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首页> 外文期刊>Journal of industrial and engineering chemistry >Preparation, thermal cure and ceramization of liquid precursors of SiC-ZrC
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Preparation, thermal cure and ceramization of liquid precursors of SiC-ZrC

机译:SiC-ZrC液态前驱体的制备,热固化和陶瓷化

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摘要

Liquid PEPSI-PZO, as precursor of SiC-ZrC multi-component ceramic, was prepared by facile reactive blending method, using phenylethynylpolysilane (PEPSI) as silicon and carbon source and poly-zirconoxanesal (PZO) as zirconium source. The processing capability of PEPSI-PZO met the demands of Precursor-infiltration-pyrolysis technique (PIP) in ceramic composites fabrication. The thermal cure was realized at 130-330 degrees C by ethynyl polymerization and condensations. The thermal cure of PEPSI-PZO precursor was promoted by catalyst Ni(acac)(2), and the curing initiation and curing peak temperatures decreased by 25 and 70 degrees C, respectively. Evidenced by ceramic yields and XRD results, the thermal pyrolysis was catalyzed by Ni(acac)(2), (ceramic yield was improved by 5-10%). XRD and SEM-EDS results showed that SiC-ZrC by 1600 degrees C pyrolysis was highly crystalline, due to the occurrence of carbothermal reduction reaction. The liquid precursor of SiC-ZrC is an ideal candidate of low cost precursors for high temperature ceramics and ceramic matrix composites. (C) 2016 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
机译:采用苯乙炔基聚硅烷(PEPSI)作为硅和碳源,聚锆氧烷(PZO)作为锆源,通过简便的反应混合法制备了SiC-ZrC多组分陶瓷前驱体液态PEPSI-PZO。 PEPSI-PZO的加工能力满足了陶瓷复合材料制造中先驱渗入热解技术(PIP)的要求。通过乙炔基聚合和缩合在130-330℃下实现热固化。催化剂Ni(acac)(2)促进了PEPSI-PZO前体的热固化,固化起始温度和固化峰值温度分别降低了25摄氏度和70摄氏度。陶瓷产率和XRD结果证明,Ni(acac)(2)催化了热裂解作用(陶瓷产率提高了5-10%)。 XRD和SEM-EDS结果表明,由于碳热还原反应的发生,SiC-ZrC在1600℃热解时具有很高的结晶度。 SiC-ZrC的液态前驱体是用于高温陶瓷和陶瓷基复合材料的低成本前驱体的理想选择。 (C)2016韩国工业和工程化学学会。由Elsevier B.V.发布。保留所有权利。

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