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Self-propagating high-temperature synthesis and liquid-phase sintering of TiC/Fe COMPOSITES

机译:TiC / Fe复合材料的自蔓延高温合成和液相烧结

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The present paper addresses a possible route for the manufacturing of iron-based metal-matrix composites (MMCs) with a high level of reinforcement. The ceramic reinforcement studied was titanium carbide (TiC). TiC is one of the hardest materials to be found, which is why a TiC/Fe composite has the potential to be used as armour. Two manufacturing routes have been evaluated experimentally, i.e., liquid-phase sintering (LPS) and self-propagating high-temperature synthesis (SHS). LPS was found to be more effective due to easier process control and due to the process yielding a more homogeneous material. Both LPS and SHS produced a material with a relatively high degree of porosity. The porosity in the LPS experiments could be decreased by varying the process parameters, but this was not possible in the SHS process. Metallographic investigation shows that the TiC/Fe system is feasible and that applications utilising TiC/Fe composites are possible in the future. This is due to the fact that despite the porosity, an improvement of the MMC properties is detected, compared to those of the matrix material.
机译:本文提出了一种制造高强度铁基金属基复合材料(MMC)的可能途径。研究的陶瓷增强材料是碳化钛(TiC)。 TiC是最难发现的材料之一,这就是为什么TiC / Fe复合材料具有用作铠装的潜力的原因。已经通过实验评估了两条制造路线,即液相烧结(LPS)和自蔓延高温合成(SHS)。发现LPS由于更容易的过程控制和由于过程产生更均质的材料而更有效。 LPS和SHS均产生了具有较高孔隙率的材料。通过改变工艺参数可以降低LPS实验中的孔隙率,但是在SHS工艺中这是不可能的。金相研究表明,TiC / Fe系统是可行的,并且将来可能会利用TiC / Fe复合材料进行应用。这是由于这样的事实:尽管有孔隙,但与基质材料相比,仍可检测到MMC性能的改善。

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