首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Processing of Al matrix composites reinforced with Al-Ni compounds and Al_2O_3 by reactive milling and reactive sintering
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Processing of Al matrix composites reinforced with Al-Ni compounds and Al_2O_3 by reactive milling and reactive sintering

机译:反应球磨和反应烧结对Al-Ni和Al_2O_3增强的Al基复合材料的加工

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摘要

Aluminum matrix composites reinforced with Al-Ni intermetallic compounds and Al_2O_3 were obtained by hot pressing of high-energy milled powders. Using the reaction between Al and NiO and aiming to preserve part of the Al content after completing the reaction by increasing the relative amount of Al, composites containing Al_2O_3 and Al-Ni intermetallic compounds were produced. These composites were characterized by X-ray diffraction (XRD) and scanning electron microscopy (SEM). Depending on the Al/NiO molar ratio, the reaction can be activated either during milling or during subsequent hot pressing. Hence, two different processing routes can be used to produce such composites. Starting from powder mixtures with an Al/NiO molar ratio of 15/3, the reaction took place during milling, forming Al_3Ni and Al_3Ni_2 plus Al_2O_3 reinforced Al composite powder, which was consolidated by hot pressing. An Al/NiO molar ratio of 20/3 prevented the reaction from occurring during milling, but enabled it to occur during subsequent hot pressing, forming the same reinforcement phases. The reactive-milled composite is harder and presents higher porosity than the reactive-sintered ones, after consolidation by hot pressing under the same parameters. In the latter route, the longer the milling time prior to hot pressing, the smaller the size of the reinforcement phases.
机译:通过对高能磨粉进行热压,获得了由Al-Ni金属间化合物和Al_2O_3增强的铝基复合材料。利用Al和NiO之间的反应,并通过增加Al的相对含量,以在反应完成后保留部分Al含量为目标,制备了含有Al_2O_3和Al-Ni金属间化合物的复合材料。这些复合材料通过X射线衍射(XRD)和扫描电子显微镜(SEM)进行表征。根据Al / NiO摩尔比,可以在研磨过程中或随后的热压过程中激活反应。因此,可以使用两种不同的加工路线来生产这种复合材料。从Al / NiO摩尔比为15/3的粉末混合物开始,反应在研磨过程中发生,形成Al_3Ni和Al_3Ni_2加上Al_2O_3增强的Al复合粉末,通过热压将其固结。 Al / NiO摩尔比为20/3可以防止在研磨过程中发生反应,但可以使其在随后的热压过程中发生,从而形成相同的增强相。在相同参数下通过热压固结后,反应性研磨复合材料比反应性烧结复合材料更硬,并且具有更高的孔隙率。在后一种路线中,热压之前的研磨时间越长,增强相的尺寸越小。

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