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Synthesis of In-situ Aluminum Matrix Composite Using a New Activated Powder Injection Method

机译:新型活化粉末注射法合成原位铝基复合材料

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In the present study, in-situ Al matrix composites containing alumina particles were synthesized by a new method that involved injection of an activated powder mixture into the molten aluminum, which was subsequently squeeze cast to minimize its porosity. The activated powder mixture was prepared by milling of powders of commercially pure aluminum and zinc oxide for a predetermined time. Milling for 60 minutes led to optimum activation of the reactant powders. Such activation reduced the reaction temperature from above 1000 °C to about 640 °C. Microstructural characterization studies revealed the formation of submicron size alumina particles with near equiaxed morphology and good particle/matrix interface. The composite specimen synthesized using the activated powder injection (API) method exhibited higher hardness, greater yield and tensile strengths, and lower elongation when compared to the monolithic specimen of similar composition. This article places particular emphasis on explaining the uniqueness of the processing methodology used in this study for synthesis of in-situ Al/Al2O3 composites.
机译:在本研究中,通过一种新方法合成了包含氧化铝颗粒的原位Al基复合材料,该方法涉及将活性粉末混合物注入熔融铝中,然后将其挤压铸造以使其孔隙率降至最低。通过将市售纯铝和氧化锌的粉末研磨预定时间来制备活化的粉末混合物。研磨60分钟导致反应物粉末的最佳活化。这样的活化将反应温度从高于1000℃降低至约640℃。微观结构表征研究表明,亚微米级氧化铝颗粒的形成具有接近等轴的形态和良好的颗粒/基体界面。与类似组成的整体式样品相比,使用活性粉末注射(API)方法合成的复合材料样品显示出更高的硬度,更大的屈服强度和拉伸强度以及更低的伸长率。本文特别强调解释本研究中用于原位合成Al / Al2 O3 复合材料的加工方法的独特性。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2008年第12期|3034-3039|共6页
  • 作者单位

    Department of Materials Engineering Isfahan University of Technology Isfahan Iran 84156-83111;

    Department of Materials Engineering Isfahan University of Technology Isfahan Iran 84156-83111;

    Department of Materials Engineering Isfahan University of Technology Isfahan Iran 84156-83111;

    Department of Mechanical Engineering National University of Singapore Singapore 117576 Singapore;

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