首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Nanocrystalline Ni3Al-based alloys obtained by recycling of aluminium scraps via mechanical alloying and consolidation
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Nanocrystalline Ni3Al-based alloys obtained by recycling of aluminium scraps via mechanical alloying and consolidation

机译:通过机械合金化和固结回收铝屑得到的纳米晶Ni3Al基合金

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Bulk nanocrystalline Ni3Al-based alloys were produced by ball milling of powdered aluminium scrap alloys (two silumines with chemical compositions: Al87.5Si7.8Cu2.1Fe0.7Zn1.4Mn0.4Mg0.1 (R1 scrap) and Al88.4Si5,7Cu3,9Fe0,9Zn0,6Mn0.5 (R2 scrap)) with addition of Ni powder and subsequent hot-pressing consolidation. The final products of mechanical alloying were consolidated at 1000 degrees C for 180 s under the pressure of 7.7 GPa. The powders and the compacted samples were examined by XRD method. The results obtained show that during the milling supersaturated solid solutions Ni(Al, Si ... ) are formed and during the consolidation the disordered solid solutions transform into ordered nanocrystalline Ni3Al intermetallic based phases with a mean crystallite size of similar to 30 nm. The microhardness of the produced Ni3Al-based alloys is 955 for R1 process and 928 HV0.1 for R2 process respectively. The density of the pellets is nearly 100% of theoretical value for the Ni3Al intermetallic phase and the open porosity of the compacts is negligibly small. (C) 2016 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:通过球磨粉末状的铝废合金(两种化学成分为Al87.5Si7.8Cu2.1Fe2.1Zn0.7Mn1.4Mn0.4Mg0.1(R1废)和Al88.4Si5,7Cu3,9Fe0的铝粉进行球磨生产块状纳米晶Ni3Al基合金,9Zn0,6Mn0.5(R2废料)),再添加镍粉,然后进行热压固结。机械合金化的最终产品在7.7 GPa的压力下于1000摄氏度固结180 s。通过XRD法检查粉末和压实样品。获得的结果表明,在研磨过程中形成了过饱和固溶体Ni(Al,Si ...),在固结过程中,无序固溶体转变为有序的纳米晶Ni3Al金属间化合物基相,平均晶粒尺寸类似于30 nm。所生产的Ni3Al基合金的显微硬度在R1工艺中为955,在R2工艺中为928 HV0.1。 Ni3Al金属间相的粒料密度几乎是理论值的100%,并且压块的开孔孔隙率可以忽略不计。 (C)2016日本粉末技术学会。由Elsevier B.V.和日本粉末技术学会出版。版权所有。

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