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首页> 外文期刊>Journal of Magnesium and Alloys >Development and characterization studies on magnesium alloy (RZ 5) surface metal matrix composites through friction stir processing
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Development and characterization studies on magnesium alloy (RZ 5) surface metal matrix composites through friction stir processing

机译:搅拌摩擦加工镁合金(RZ 5)表面金属基复合材料的研究与表征

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摘要

Surface metal matrix composite is produced on the as cast Magnesium Rare Earth alloy – RZ 5 by single pass friction stir processing using various microano sized reinforcement particles namely Boron Carbide (B4C), Multi Walled Carbon Nano Tubes (MWCNTs), and a mixture of ZrO2?+?Al2O3particles. Fine grained metal matrix composites having the grain size ranging 0.8?μm to 1.87?μm are achieved. Grain boundary pinning by the reinforcement particles has resulted in the transformation of coarse grained (~81?μm) base material into fine grained (<1?μm) metal matrix composite. Finer grain structure and the presence of reinforcements at the stir zone have resulted in increased and improved mechanical properties of the developed composites. Microhardness ranging between 125?HV and 403?HV is achieved. Uni-axial Tensile Testing of the developed composites exhibited improvement in tensile strength. Metal matrix composites developed using various reinforcements exhibited an increase in strength ranges between 250?MPa and 320?MPa.
机译:表面金属基复合材料是通过使用多种微米/纳米尺寸的增强颗粒(即碳化硼(B4C),多壁碳纳米管(MWCNTs)和混合物)通过单程摩擦搅拌工艺在铸造的稀土镁合金-RZ 5上生产的ZrO2 ++ Al2O3颗粒。获得了晶粒尺寸为0.8μm至1.87μm的细晶粒金属基复合材料。增强颗粒对晶界的钉扎作用导致粗晶粒(〜81μm)的基体材料转变为细晶粒(<1μm)的金属基复合材料。细微的晶粒结构和在搅拌区的增强材料的存在导致了已开发复合材料的机械性能提高和改善。显微硬度在125?HV和403?HV之间。所开发复合材料的单轴拉伸测试显示出拉伸强度的提高。使用各种增强材料开发的金属基复合材料的强度范围增加了250?MPa至320?MPa。

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