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Synthesis of Metallic and Intermetallic Matrix Composites Reinforced by Alumina by Reaction in NiO/Al Mixtures

机译:用NiO / Al混合物反应合成氧化铝加强的金属和金属间基质复合材料

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Present study concerns a reduction of nickel oxide by aluminum via mechanical alloying. Essentially, the reaction products depend on two parameters: the milling time and the molar ratio of elementary powders. This reaction between the starting NiO-Al powders, which takes place during the high-energy ball milling, makes it possible to produce nickel matrix composites reinforced by alumina particles. For the NiO/Al molar ratio of 3/2, the synthesis reaction begins after 4 h of milling time while for a ratio of 3/3, it ends after 2 h forming Ni-Al2O3 composite. Furthermore, changing the NiO/Al ratio to 3/4 and 3/5, allows generation of different phases, where the excess Al reacts with Ni already produced to form NixAly intermetallic matrix reinforced with Al2O3 particles. Due the low apparent density of the green compact, a sintering treatment is necessary to densify the material. This process has been carried out at 800 and 1200 A degrees C under argon atmosphere. Experimental results show that the milling time and starting ratio of NiO/Al powders have an important effect on the reduction reaction of NiO by Al.
机译:目前研究涉及通过机械合金化通过铝的氧化镍。基本上,反应产物取决于两个参数:铣削时间和基本粉末的摩尔比。在高能球磨机期间发生的起始NiO-Al粉末之间的这种反应使得可以产生由氧化铝颗粒增强的镍基复合材料。对于NiO / Al摩尔比为3/2,合成反应在铣削时间4小时后开始,同时为3/3的比例,在2小时形成Ni-Al 2 O 3复合物后结束。此外,将NiO / Al的比例改变为3/4和3/5,允许产生不同的相,其中过量的Al与已经产生的Ni的Ni反应,以形成与Al 2 O 3颗粒增强的Nixaly金属间基质。由于绿色紧凑的低表观密度,需要烧结处理来致密材料。该过程在氩气氛下在800和1200℃下进行。实验结果表明,NiO / Al粉末的研磨时间和起始比对Al的Nio还原反应具有重要作用。

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