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首页> 外文期刊>Materials Science and Engineering >Investigation of particle size and amount of alumina on microstructure and mechanical properties of Al matrix composite made by powder metallurgy
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Investigation of particle size and amount of alumina on microstructure and mechanical properties of Al matrix composite made by powder metallurgy

机译:氧化铝的粒度和数量对粉末冶金Al基复合材料组织和力学性能的影响。

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Al matrix composite is well known, in which Al_2O_3 is the most widely used reinforcement. The aim of this study is to investigate the effect of alumina particle size and its amount on the relative density, hardness, microstructure, wear resistance, yield and compressive strength and elongation in Al-Al2O_3 composites. To this end, the amount of 0-20 wt.% alumina with average particle sizes 48, 12 and 3 μm was used along with pure aluminum of average particle size of 30 μm. Powder metallurgy is a method used in the fabrication of this composite in which the powders were mixed using a planetary ball mill. Consolidation was conducted by axial pressing at 440 MPa. Sintering procedure was done at 550 ℃ for 45 min. The results indicated that as the alumina particle size is reduced, density raises at first, then, declines. Moreover, as the alumina particle size decreases, hardness, yield strength, compressive strength and elongation increase and factors such as wear resistance, microstructure grain size and distribution homogeneity in matrix decreases. For instance, as the alumina particle size gets smaller from 48 to 3 μm at 10 wt.% alumina, hardness rises from 50 to 70 BHN, compressive strength improves from 168 to 307 MPa and wear rate rises from 0.0289 to 0.0341 mm~3/m. On the other hand, as the amount of alumina increases, hardness and wear resistance increase and relative density and elongation is decreased. However, compressive and yield strength rise at first, then drop. For example, if the amount of alumina with 12 μm particle size increases from 5 to 10 wt.%, hardness increases from 47 to 62 BHN and compressive strength rises from 190 to 273 MPa. Nevertheless, erosion rate after 300 m decreases from 0.0447 to 0.0311 mm~3/m.
机译:Al基复合材料是众所周知的,其中Al_2O_3是使用最广泛的增强材料。这项研究的目的是研究氧化铝颗粒的大小及其含量对Al-Al2O_3复合材料的相对密度,硬度,显微组织,耐磨性,屈服强度和抗压强度及伸长率的影响。为此,使用平均粒度为48、12和3μm的0-20重量%的氧化铝以及平均粒度为30μm的纯铝。粉末冶金是用于制造该复合材料的方法,其中使用行星式球磨机将粉末混合。通过在440MPa的轴向压力进行固结。烧结过程在550℃下进行45分钟。结果表明,随着氧化铝粒径的减小,密度先升高,然后降低。此外,随着氧化铝粒度的减小,硬度,屈服强度,抗压强度和伸长率增加,并且诸如耐磨性,微结构晶粒尺寸和基体中的分布均匀性等因素降低。例如,随着氧化铝在10 wt。%时粒径从48减小到3μm,硬度从50 BHN增加到70 BHN,抗压强度从168 MPa提高到307 MPa,磨损率从0.0289增加到0.0341 mm〜3 /米另一方面,随着氧化铝量的增加,硬度和耐磨性增加并且相对密度和伸长率降低。但是,抗压强度和屈服强度首先上升,然后下降。例如,如果具有12μm粒度的氧化铝的量从5重量%增加到10重量%,则硬度从47BHN增加到62BHN,并且抗压强度从190MPa增加到273MPa。然而,300 m后的侵蚀速率从0.0447降至0.0311 mm〜3 / m。

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