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Microstructure and mechanical properties of multilayer-lined composite pipes prepared by SHS centrifugal-thermite process

机译:SHS离心-温热法制备多层内衬复合管的组织和力学性能

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摘要

Using a self-propagating high-temperature synthesis centrifugal-thermite process, pipes were lined with a multiphase ceramic layer. The ceramic layer was metallurgically joined with an intermediate intermetallic layer, situated between the base metal and the ceramic layer. The microstructures of the intermetallic layer, the multiphase ceramic layer, and the interfaces between them were investigated. The results showed that ceramic layer was composed of Al_2O_3, TiO_2, and TiC while the intermediate layer contained AlFe, AlCrFe, and NiFe. Under the action of the centrifugal force, the phase TiC settled in the interface between the intermetallic and ceramic layers. The good wettability of TiC by ferrous metals and by Al_2O_3, the intermetallic layer and ceramic layer resulted in a good bond with improved bonding strength. Mechanical characterization of the pipes showed a significant improvement over conventional thermite self-propagating high-temperature synthesis (SHS) methods.
机译:使用自蔓延高温合成离心-铝热过程,管道衬有多相陶瓷层。陶瓷层与位于基底金属和陶瓷层之间的中间金属间层冶金结合。研究了金属间化合物层,多相陶瓷层以及它们之间的界面的微观结构。结果表明,陶瓷层由Al_2O_3,TiO_2和TiC组成,中间层含有AlFe,AlCrFe和NiFe。在离心力的作用下,TiC相沉淀在金属间层和陶瓷层之间的界面上。黑色金属和Al_2O_3,金属间层和陶瓷层对TiC的良好润湿性导致了良好的结合,提高了结合强度。与常规的铝热剂自蔓延高温合成(SHS)方法相比,管道的机械特性显示出显着改善。

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