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Al_2O_3-Ni_3Al Composites Obtained by Reactive Milling and Reactive Sintering

机译:通过反应铣削和反应性烧结获得的AL_2O_3-NI_3AL复合材料

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Ceramic-intermetallic composites, especially Al_2O_3-Ni_3Al, can exhibit good values of mechanical properties, mainly associated with wear resistance. Fine and homogeneous precursors powders to produce Al_2O_3-Ni_3Al can be obtained through the reaction 3NiO + 3Al → Ni_3Al + Al_2O_3 during high-energy ball milling processing. If there is no control, the reaction can occur in a SHS (self-sustaining high temperature synthesis) type. In this work, we report on the effect of the amount of Al_2O_3 which was added as diluent in the mixture of the reactants, and also on the effect of milling time, to result in the final products. We have observed that there is a critical amount of diluent that inhibits the reaction to proceed in the SHS manner. For this reaction, the limit amount of alumina which keeps the reaction still in the SHS type was observed to be 0.7 moles. Using concentrations of alumina above this critical value, the reaction proceeds gradually, and if desired it may be further completed during sintering of the milled powders. The phase evolution during milling and sintering was studied by X-ray diffraction, differential scanning calorimetry, scanning electron microscopy and transmission electron microscopy. The results are discussed in terms of the occurrence or not of the SHS reaction during milling, the fine structure of the precursors powders when the reaction is gradual and the microstructure of the sintered samples.
机译:陶瓷 - 金属间复合物,尤其是Al_2O_3的-Ni_3Al,可以表现出机械性能,主要是与耐磨损性相关的良好的值。微细且均匀的前体粉末,以产生Al_2O_3的-Ni_3Al可通过高能球磨处理时的反应3NiO + 3AL→Ni_3Al + Al_2O_3的获得。如果没有控制,可能发生在SHS(自我维持的高温合成)型反应。在这项工作中,我们在其上添加稀释剂在反应物的混合物,也球磨时间的效果Al_2O_3的量的效果报告,导致最终产品。我们已经观察到,有抑制反应在SHS方式进行稀释剂的临界量。对于该反应,观察到这保持反应仍然在SHS型氧化铝的限制量为0.7摩尔。使用的氧化铝高于该临界值的浓度时,反应缓慢地进行,并且如果需要其可在球磨粉末的烧结过程中被进一步完成。研磨和烧结时的相位演化物通过X射线衍射,差示扫描量热法,扫描电子显微镜和透射电子显微镜研究。结果列于发生来讨论或不研磨期间的SHS反应,前体粉末的精细结构时,反应是渐进的和烧结样品的微结构。

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