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Effect of Ti Addition on the Microstructure and Mechanical Properties of SiC Matrix Composites Infiltrated by Al–Si (10 wt.)–xTi Alloy

机译:钛添加量对渗入Al-Si(10 wt。%)-xTi合金的SiC基复合材料的组织和力学性能的影响

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摘要

This paper proposes a simple reactive melt infiltration process to improve the mechanical properties of silicon carbide (SiC) ceramics. SiC matrix composites were infiltrated by Al–Si (10 wt.%)–xTi melts at 900 °C for 4 h. The effects of Ti addition on the microstructure and mechanical properties of the composites were investigated. The results showed that the three-point bending strength, fracture toughness (by single-edge notched beam test), and fracture toughness (by Vickers indentation method) of the SiC ceramics increased most by 34.3%, 48.5%, and 128.5%, respectively, following an infiltration with the Al–Si (10 wt.%)–Ti (15 wt.%) melt. A distinct white reaction layer mainly containing a Ti3Si(Al)C2 phase was formed on the surface of the composites infiltrated by Al alloys containing Ti. Ti–Al intermetallic compounds were scattered in the inner regions of the composites. With the increase in the Ti content (from 0 to 15 wt.%) in the Al alloy, the relative contents of Ti3Si(Al)C2 and Ti–Al intermetallic compounds increased. Compared with the fabricated composite infiltrated by an Al alloy without Ti, the fabricated composites infiltrated by Al alloys containing Ti showed improved overall mechanical properties owing to formation of higher relative content Ti3Si(Al)C2 phase and small amounts of Ti–Al intermetallic compounds.
机译:本文提出了一种简单的反应熔体渗透工艺,以改善碳化硅(SiC)陶瓷的机械性能。 SiC基复合材料在900°C下通过Al-Si(10 wt。%)-xTi熔体渗入4 h。研究了Ti添加量对复合材料组织和力学性能的影响。结果表明,SiC陶瓷的三点弯曲强度,断裂韧性(通过单边缺口梁测试)和断裂韧性(通过维氏压痕法)分别分别增长了34.3%,48.5%和128.5%。之后,随着Al-Si(10 wt。%)-Ti(15 wt。%)熔体的渗入。在由含Ti的铝合金渗入的复合材料的表面上形成主要包含Ti 3 Si(Al)C 2相的明显的白色反应层。 Ti-Al金属间化合物散布在复合材料的内部区域。随着铝合金中钛含量的增加(从0到15重量%),Ti3Si(Al)C2和Ti-Al金属间化合物的相对含量增加。与由不含Ti的铝合金渗入的已加工复合材料相比,由含Ti的铝合金浸入的已加工复合材料由于形成了较高的相对Ti3Si(Al)C2相和少量的Ti-Al金属间化合物而显示出改善的整体机械性能。

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