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Comparative study of mechanical properties of cast and forged Al-3Mg-MnO2 and Al-8Mg-MnO2 composites

机译:铸造和锻造Al-3Mg-MnO2和Al-8Mg-MnO2复合材料力学性能的比较研究

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摘要

The Al-Mg-MnO composite is a MnO particulate reinforced Al metal matrix composite. Its substantial ductility makes it promising composite for study. The Al-3Mg-MnO and Al-8Mg-MnO composites were synthesized by stirring 3, 5, and 8 wt% of MnO particulates in Al-3Mg melt and Al-8Mg melt to study their mechanical properties. Their microstructure shows intermetallic precipitates of Al, Mg, and Mn at dendrites, grain boundaries and within the grains. In both sets of composites, the hardness, and the yield strength increases with increasing MnO content in the cast and forged composites. Both the groups of composites show an increase in tensile strength with increasing particle content from 3 to 5 wt%, a further increase in particle content to 8 wt%, leads to an abrupt decrease in tensile strength in both the group of composites. The percentage elongations in forged composites are lower than those in cast composites, but this decrease is more prominent in Al-8Mg-MnO composites in comparison to Al-3Mg-MnO composites. The value decreases as the percentage of MnO particles increases in Al-3Mg-MnO and Al-8Mg-MnO composites. Forging increases values in both the class of composites in comparison to their cast counterparts due to work hardening and healing of pores. Crack growth toughness also decreases as the MnO particle content increases in Al-3Mg-MnO and Al-8Mg-MnO composites. Forged Al-3Mg-MnO shows decreased T/E ratio in comparison to their cast counterparts except at 8wt%. However, forged Al-8Mg-MnO shows improved T/E at 3wt% and a drop at 5wt% and 8wt% MnO . Variation of crack growth toughness between cast and forged Al-8Mg-MnO is minimal in comparison to that between cast and forged Al-3Mg-MnO composites.
机译:Al-Mg-MnO复合材料是MnO颗粒增强的Al金属基复合材料。其高延展性使其成为有前途的复合材料。通过在Al-3Mg熔体和Al-8Mg熔体中搅拌3、5和8 wt%的MnO颗粒来合成Al-3Mg-MnO和Al-8Mg-MnO复合材料,以研究其机械性能。它们的显微组织显示出在树枝状,晶界和晶粒内的Al,Mg和Mn金属间沉淀物。在两组复合材料中,硬度和屈服强度都随着铸造和锻造复合材料中MnO含量的增加而增加。两组复合物均显示出随着颗粒含量从3至5wt%增加而抗拉强度增加,颗粒含量进一步增加至8wt%,导致两组复合物中的抗张强度突然降低。锻造复合材料的伸长百分比低于铸造复合材料的伸长百分比,但与Al-3Mg-MnO复合材料相比,这种降低在Al-8Mg-MnO复合材料中更为明显。该值随着Al-3Mg-MnO和Al-8Mg-MnO复合材料中MnO颗粒百分比的增加而降低。与铸件相比,锻造增加了复合材料类别的值,这归因于加工硬化和毛孔的愈合。随着Al-3Mg-MnO和Al-8Mg-MnO复合材料中MnO颗粒含量的增加,裂纹扩展韧性也降低。锻造的Al-3Mg-MnO与铸件相比,T / E比率降低,但重量百分比为8%。但是,锻造的Al-8Mg-MnO在3wt%时显示出改善的T / E,在5wt%和8wt%时显示出下降的T / E。与铸造和锻造的Al-3Mg-MnO复合材料相比,铸造和锻造的Al-8Mg-MnO之间的裂纹扩展韧性变化最小。

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