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首页> 外文期刊>CERAMICS INTERNATIONAL >Influence of CLVD thermal gradient on the deposition behavior, microstructure and properties of C/C-ZrC composites
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Influence of CLVD thermal gradient on the deposition behavior, microstructure and properties of C/C-ZrC composites

机译:CLVD热梯度对C / C-ZRC复合材料沉积行为,微观结构和性能的影响

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Chemical liquid vapor deposition (CLVD) is a rapid preparation method, but it is rarely involved in fabrication of C/C-UHTCs composites and its technology parameters are hardly discussed. In the present study, C/C-ZrC samples were prepared by CLVD process, and the effects of thermal gradient on the deposition behavior, microstructure and properties were investigated. Results exhibited the density, ZrC content and uniformity of the composites increased as the thermal gradient decreased from 30.4 to 9.8 degrees C/mm, indicating the deposition behavior was improved gradually. When the thermal gradient was 30.4 degrees C/mm, the deposition behavior of the specimen was poor, which resulted in the high porosity, small numbers of ZrC blocks and uneven distribution. Therefore, the specimen had a low flexural strength with brittle fracture and poor ablation resistance. As the thermal gradient decrease to 9.8 degrees C/mm, there was an excellent deposition in the composites, and the composites possessed large amounts of ZrC particles and their dispersion were improved remarkably. In this case, the composites displayed a non-brittle fracture with high strength, and the linear and mass ablation rates were reduced, which indicated an improvement of anti-ablation property. Nevertheless, the deposition was deteriorated evidently when the thermal gradient reached to 0 degrees C/mm. The density, ZrC content and uniformity of the sample became poor, leading to the decline of mechanical property and ablation resistance.
机译:化学液体气相沉积(CLVD)是一种快速制备方法,但很少参与C / C-UHTCS复合材料的制造,并且几乎没有讨论其技术参数。在本研究中,通过CLVD方法制备C / C-ZRC样品,研究了对沉积行为,微观结构和性质进行热梯度的影响。结果表明,随着热梯度从30.4〜9.8℃/ mm降低,复合材料的密度,Zrc含量和均匀性增加,表示沉积行为逐渐提高。当热梯度为30.4摄氏度C / mm时,样品的沉积行为差,导致高孔隙率,少量ZRC块和不均匀的分布。因此,样品具有低抗弯曲强度,具有脆性折断和抗热抗性差。随着热梯度降低至9.8℃/ mm,复合材料中存在优异的沉积,并且复合材料具有大量的ZRC颗粒,并且其分散体显着提高。在这种情况下,复合材料以高强度显示出非脆性骨折,并且降低了线性和质量消融率,这表明抗消融性质的改善。然而,当热梯度达到0℃/ mm时,沉积显着恶化。样品的密度,Zrc含量和均匀性变差,导致机械性能和消融抗性的下降。

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