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Influence of Cu Content on Interfacial Structure and Mechanical Properties of 3Al{sub}2O{sub}32SiO{sub}2 Fiber Reinforced Al Matrix Composites

机译:Cu含量对3Al {Sub} 22SiO {Sub} 220 {Sub} 2纤维增强Al矩阵复合材料的界面结构和力学性能的影响

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摘要

In this paper, pure aluminium and Al-Cu (1%, 3% and 5% in mass fraction) alloy matrix composites reinforced with 35vol% 3Al{sub}2O{sub}32SiO{sub}2 short fibers were fabricated by a squeeze-casting technique. Interfacial structure and distribution of element of the composites were investigated by means of SEM, EPMA and TEM. The experimental results indicated that when pure aluminium was used as matrix, the interface was slick and chemical reaction occurred at the interface between amorphous SiO{sub}2 and matrix Al. When Cu element was added into the Al matrix alloy, the amorphous SiO{sub}2 on the fiber surface remained. Further more, with the increase of Cu element, the amount of the retained amorphous SiO{sub}2 increased. The interfacial reaction was inhibited due to the Cu element diffusion and enrichment towards the short fiber surface. SEM observation showed that large amount of fiber was drawn out from the matrix and some of them have been ruptured. Tensile test showed that the tensile strength of the 35vol% 3Al{sub}2O{sub}32SiO{sub}(2sf)/Al-Cu composite increased with the increasing of Cu content as compared with the Al{sub}2O{sub}(3f)/pure Al composite, the increment of the fracture strength of 3Al{sub}2O{sub}32SiO{sub}(2sf)/Al-Cu composite were 102%, 146% and 171%, respectively.
机译:在本文中,用35Vol%3Al {Sub} 2O {Sub} 32SiO {Sub} 2的合金基质复合材料增强的纯铝和铝化合物增强-Casting技术。通过SEM,EPMA和TEM研究了复合材料元素的界面结构和分布。实验结果表明,当纯铝用作基质时,界面是光滑的,在无定形SiO {} 2和基质Al之间的界面处发生化学反应。当将Cu元素加入到Al基质合金中时,纤维表面上的无定形SiO {亚} 2残留。此外,随着Cu元素的增加,保留的无定形SiO {Sub} 2的量增加。由于Cu元素扩散和富含短纤维表面的富集,抑制界面反应。 SEM观察表明,从基质中抽出了大量的纤维,其中一些已经破裂。拉伸试验表明,与Al {Sub} 2O}相比,35Vol%3Al {Sub} 2O {Sub} 2O {Sub} 2O} 2O}(2SF)/ Al-Cu}(2SF)/ Al-Cu}(2SF)/ Al-Cu复合材料的抗拉强度增加(3F)/纯Al复合材料,3AL {亚} 2O} 22SiO {Sub}(2SF)/ Al-Cu复合材料的断裂强度分别为102%,146%和171%。

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