首页> 美国卫生研究院文献>Materials >Influence of Ti3C2Tx MXene and Surface-Modified Ti3C2Tx MXene Addition on Microstructure and Mechanical Properties of Silicon Carbide Composites Sintered via Spark Plasma Sintering Method
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Influence of Ti3C2Tx MXene and Surface-Modified Ti3C2Tx MXene Addition on Microstructure and Mechanical Properties of Silicon Carbide Composites Sintered via Spark Plasma Sintering Method

机译:通过火花等离子体烧结法烧结碳化硅复合材料微观结构和机械性能的Ti3C2Tx mx12和表面改性Ti3C2Tx Mx的影响

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摘要

This article presents new findings related to the problem of the introduction of MXene phases into the silicon carbide matrix. The addition of MXene phases, as shown by the latest research, can significantly improve the mechanical properties of silicon carbide, including fracture toughness. Low fracture toughness is one of the main disadvantages that significantly limit its use. As a part of the experiment, two series of composites were produced with the addition of 2D-Ti3C2Tx MXene and 2D-Ti3C2Tx surface-modified MXene with the use of the sol-gel method with a mixture of Y2O3/Al2O3 oxides. The composites were obtained with the powder metallurgy technique and sintered with the Spark Plasma Sintering method at 1900 °C. The effect adding MXene phases had on the mechanical properties and microstructure of the produced sinters was investigated. Moreover, the influence of the performed surface modification on changes in the properties of the produced composites was determined. The analysis of the obtained results showed that during sintering, the MXene phases oxidize with the formation of carbon flakes playing the role of reinforcement. The influence of the Y2O3/Al2O3 layer on the structure of carbon flakes and the higher quality of the interface was also demonstrated. This was reflected in the higher mechanical properties of composites with the addition of modified Ti3C2Tx. Composites with 1 wt.% addition of Ti3C2Tx M are characterized with a fracture toughness of 5 MPa × m0.5, which is over 50% higher than in the case of the reference sample and over 15% higher than for the composite with 2.5 wt.% addition of Ti3C2Tx, which showed the highest fracture toughness in this series.
机译:本文介绍了与碳化硅基质引入偏态阶段的问题有关的新发现。如最新研究所示,添加MXENE相可以显着提高碳化硅的机械性能,包括断裂韧性。低断裂韧性是显着限制其使用的主要缺点之一。作为实验的一部分,通过使用具有Y 2 O 3 / Al 2 O 3氧化物的混合物的溶胶 - 凝胶法加入2D-Ti3C2TX mxene和2D-Ti3C2Tx表面改性MX,通过使用溶胶 - 凝胶法加入两系列复合材料。用粉末冶金技术获得复合材料,并在1900℃下用火花等离子体烧结方法烧结。研究了加入偏蛋白阶段的效果对所产生的索特斯的机械性能和微观结构进行了研究。此外,测定了对所产生复合材料性能变化的表现表面改性的影响。所得结果的分析表明,在烧结过程中,MXENE相随着碳薄片的形成氧化,扮演增强的作用。还证明了Y2O3 / Al2O3层对碳薄片结构和较高质量的影响。这反映在复合材料的较高机械性能下,加入修饰的Ti3C2Tx。具有1wt的复合材料。Ti3C2Tx M的%加入的特征在于5mPa×M0.5的断裂韧性,比参考样品的情况高出50%,而不是2.5重量的复合材料的15%以上超过15% 。%加入Ti3C2Tx,显示该系列中的最高断裂韧性。

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