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Preparation of High Strength Mo(Si, AI)2-SiC Composite by Melt Infiltration Process

机译:熔渗法制备高强度Mo(Si,AI)2-SiC复合材料

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The Mo(Si, AI)_2-SiC composite was prepared by infiltrating melted aluminum into MoSi2+C compacts at 1350°C, and the microstructure and mechanical property of this composite were analyzed. The results showed that the phases of these composite are Mo(Si1-x,Alx)2 and SiC, and a small amount of Mo5Si3C and Al. Increasing the value of x, the amount of Mo5Si3C and Al phases decrease and even disappear gradually. The microstructure of this composite is sheet-like Mo(Si, Al)_2 with needle-likeSiC distributed in its gap, and parts of SiC are whisker-like. When x=0.2, the bending strength of the composite reaches the maximum, which was 770 MPa. The bending strength of designed composite prepared by melt infiltration in this study is better than that of the composite prepared by hot pressing reported in literature.
机译:通过在1350℃下将熔化的铝渗入MoSi2 + C压坯中制备Mo(Si,AI)_2-SiC复合材料,并对该复合材料的显微组织和力学性能进行了分析。结果表明,这些复合物的相为Mo(Si1-x,Alx)2和SiC,以及少量的Mo5Si3C和Al。增加x的值,Mo5Si3C和Al相的数量减少,甚至逐渐消失。该复合材料的微观结构为片状针状的Mo(Si,Al)_2 SiC分布在间隙中,部分SiC晶须状。当x = 0.2时,复合材料的弯曲强度达到最大值,为770MPa。在这项研究中,通过熔体渗透制备的设计复合材料的弯曲强度要优于文献报道的通过热压制备的复合材料的弯曲强度。

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