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Effect of Alumina Fibers on Fabrication Process and Characteristics of Alumina Fiber Reinforced Aluminum Alloy Composites

机译:氧化铝纤维对氧化铝纤维增强铝合金复合材料制造工艺及特性的影响

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In order to develop the alumina fiber reinforcements optimized to FRMMCs, the effect of characteristics of alumina fibers on the fabrication process and the characteristics of the alumina fiber reinforced Al alloy composites was investigated. Alumina fibers which have different alumina content were prepared. Alumina content in the fibers was varied from 80% to 100%. Al-4mass%Cu alloy, Al-12mass%Si alloy and Al-10masss%Mg alloy were used as matrix. The FRMMC specimens were fabricated by a low-pressure infiltration process (LPI process). The formability of the preform was improved with increasing alumina content in the fibers. However, broken fibers were observed in the preform when alumina fibers with high alumina content were used. The number of the broken fibers seemed to be increased with increasing alumina content in the fibers. This result could be attributable to a change of fiber strength resulting from a change of alumina content in the fiber. The FRMMC specimens were characterized by using Vickers hardness test. The Vickers hardness of FRMMC specimens depended on the elasticity or the hardness of the fibers. The results obtained suggest that the characteristics of the FRMMCs largely depend on the intrinsic characteristics of the reinforcement fibers.
机译:为了开发优化的氧化铝纤维增强剂,对氧化铝纤维的特性对制造过程的影响和氧化铝纤维增强Al合金复合材料的特性。制备具有不同氧化铝含量的氧化铝纤维。纤维中的氧化铝含量从80%变化至100%。 Al-4mass%Cu合金,Al-12mass%Si合金和Al-10mass%Mg合金用作基质。通过低压渗透过程(LPI工艺)制造FRMMC标本。随着纤维中的氧化铝含量增加,预制件的可成效性得到改善。然而,当使用具有高氧化铝含量的氧化铝纤维时,在预制件中观察破碎的纤维。随着纤维中的氧化铝含量增加,破碎的纤维的数量似乎增加。该结果可归因于由于纤维中氧化铝含量的变化而导致的纤维强度的变化。通过使用维氏硬度测试的特征来表征FRMMC样本。 FRMMC标本的维氏硬度取决于纤维的弹性或硬度。得到的结果表明,FRMMC的特性在很大程度上取决于增强纤维的内在特征。

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