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High-Performance Metal/Carbide Composites with Far-From-Equilibrium Compositions and Controlled Microstructures

机译:具有非平衡组成和受控微结构的高性能金属/硬质合金复合材料

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摘要

The prospect of extending existing metal-ceramic composites to those with the compositions that are far from thermodynamic equilibrium is examined. A current and pressure-assisted, rapid infiltration is proposed to fabricate composites, consisting of reactive metallic and ceramic phases with controlled microstructure and tunable properties. An aluminum (Al) alloy/Ti2AlC composite is selected as an example of the far-from-equilibrium systems to fabricate, because Ti2AlC exists only in a narrow region of the Ti-Al-C phase diagram and readily reacts with Al. This kind of reactive systems challenges conventional methods for successfully processing corresponding metal-ceramic composites. Al alloy/Ti2AlC composites with controlled microstructures, various volume ratios of constituents (40/60 and 27/73) and metallic phase sizes (42–83 μm, 77–276 μm, and 167–545 μm), are obtained using the Ti2AlC foams with different pore structures as preforms for molten metal (Al alloy) infiltration. The resulting composites are lightweight and display exceptional mechanical properties at both ambient and elevated temperatures. These structures achieve a compressive strength that is 10 times higher than the yield strength of the corresponding peak-aged Al alloy at ambient temperature and 14 times higher at 400 °C. Possible strengthening mechanisms are described, and further strategies for improving properties of those composites are proposed.
机译:考察了将现有的金属陶瓷复合材料扩展到具有远非热力学平衡的组成的前景。提出了一种电流和压力辅助的快速渗透方法来制造复合材料,该复合材料由具有可控的微观结构和可调特性的反应性金属和陶瓷相组成。选择铝(Al)合金/ Ti2AlC复合材料作为制造极不平衡体系的例子,因为Ti2AlC仅存在于Ti-Al-C相图的狭窄区域且容易与Al反应。这种反应性系统对成功加工相应的金属陶瓷复合材料的常规方法提出了挑战。使用Ti2AlC可获得具有可控的微观结构,各种成分的体积比(40/60和27/73)和金属相大小(42-83μm,77-276μm和167-545μm)的铝合金/ Ti2AlC复合材料具有不同孔结构的泡沫作为熔融金属(铝合金)渗透的预成型坯。所得复合材料重量轻,在环境温度和高温下均显示出优异的机械性能。这些结构的抗压强度比相应的峰值时效铝合金在环境温度下的屈服强度高10倍,而在400 C时则高14倍。描述了可能的强化机制,并提出了改善这些复合材料性能的其他策略。

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