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Influence of Cr and W alloying on the fiber-matrix interfacial shear strength in cast and directionally solidified sapphire NiAl composites

机译:Cr和W合金化对铸造和定向凝固蓝宝石NiAl复合材料纤维-基体界面剪切强度的影响

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摘要

Sapphire-reinforced NiAl matrix composites with chromium or tungsten as alloying additions were synthesized using casting and zone directional solidification (DS) techniques and characterized by a fiber pushout test as well as by microhardness measurements. The sapphire-NiAl(Cr) specimens exhibited an interlayer of Cr rich eutectic at the fiber-matrix interface and a higher interfacial shear strength compared to unalloyed sapphire-NiAl specimens processed under identical conditions. In contrast, the sapphire-NiAl(W) specimens did not show interfacial excess of tungsten rich phases, although the interfacial shear strength was high and comparable to that of sapphire-NiAl(Cr). The postdebond sliding stress was higher in sapphire-NiAl(Cr) than in sapphire-NiAl(W) due to interface enrichment with chromium particles. The matrix microhardness progressively decreased with increasing distance from the interface in both DS NiAl and NiAl(Cr) specimens. The study highlights the potential of casting and DS techniques to improve the toughness and strength of NiAl by designing dual-phase microstructures in NiAl alloys reinforced with sapphire fibers.
机译:使用铸造和区域定向凝固(DS)技术合成了铬或钨作为合金添加物的蓝宝石增强NiAl基复合材料,并通过纤维推出试验和显微硬度测量对其进行了表征。与在相同条件下加工的非合金蓝宝石-NiAl试样相比,蓝宝石-NiAl(Cr)试样在纤维-基体界面处表现出富铬共晶夹层,并且具有较高的界面剪切强度。相比之下,蓝宝石-NiAl(W)试样并未显示出富钨相的界面过量,尽管界面剪切强度很高,与蓝宝石-NiAl(Cr)相当。蓝宝石-NiAl(Cr)的脱粘后滑动应力比蓝宝石-NiAl(W)高,这归因于铬颗粒的界面富集。在DS NiAl和NiAl(Cr)试样中,随着距界面距离的增加,基体的显微硬度逐渐降低。这项研究强调了通过设计蓝宝石纤维增强的NiAl合金的双相微观结构,铸造和DS技术可以提高NiAl的韧性和强度。

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