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Blended powder semisolid forming of Al7075/Al2O3 composites: Investigation of microstructure and mechanical properties

机译:Al7075 / Al2O3复合材料的粉末半固态混合成形:微观组织和力学性能的研究

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Blended powder semisolid forming was adapted to fabricate Al7075/Al2O3 composites. The process included powders uniform distribution, mechanical alloying, and semisolid compaction. Al7075 elemental powders (20 and 63 mu m) were incrementally added to ethanol solution under ultrasonic mixing. Al2O3 particles with different sizes (5 and 120 mu m) and weight fractions (5, 10, and 20 wt.%) were blended with the matrix particles using a planetary ball mill. Al7075/Al2O3 composites were then compacted at semisolid state under different pressures (40 and 80 MPa). The effects of Al7075 and Al2O3 particle size, Al2O3 weight fraction, and compaction pressure on the morphology, microstructure, compaction mechanism, density, hardness, compression modulus and strength, and phase formation were measured and analyzed. The highest microstructural uniformity was achieved when large Al2O3 particles (120 mu m) were distributed within the small matrix particles (20 mu m). The density and hardness increased as the size of the reinforcing particles and the applied pressure were increased. Therefore, the composites with 20 mu m Al7075 and 20 wt.% of 120 mu m Al2O3 powder compacted under 80 MPa exhibited the highest improvements in relative density (98.685%), hardness (Rockwell B of 70), and compressive strength (327 MPa). The results are of great value in developing high performance lightweight metal matrix composites. (C) 2016 Elsevier Ltd. All rights reserved.
机译:混合粉末半固态成型适合于制造Al7075 / Al2O3复合材料。该过程包括粉末均匀分布,机械合金化和半固体压实。在超声混合下将Al70​​75元素粉末(20和63μm)逐渐添加到乙醇溶液中。使用行星式球磨机将具有不同尺寸(5和120μm)和重量分数(5、10和20 wt。%)的Al2O3颗粒与基质颗粒混合。然后将Al70​​75 / Al2O3复合材料在不同压力(40和80 MPa)下以半固态压制。测量并分析了Al7075和Al2O3的粒径,Al2O3的重量分数和压实压力对形貌,微观结构,压实机理,密度,硬度,压缩模量和强度以及相形成的影响。当较大的Al2O3颗粒(120微米)分布在较小的基质颗粒(20微米)中时,可获得最高的微观结构均匀性。随着增强颗粒尺寸和施加压力的增加,密度和硬度增加。因此,在80 MPa下压实具有20μmAl7075和20 wt。%的120μmAl2O3粉末的复合材料在相对密度(98.685%),硬度(洛氏B为70)和抗压强度(327 MPa)方面表现出最高的改善。 )。该结果对于开发高性能轻质金属基复合材料具有重要价值。 (C)2016 Elsevier Ltd.保留所有权利。

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