氧化物分散体强化镁:超声分散体对微观组织和力学性能的影响

S. Hassan
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摘要

在本研究中,超细(0.3µm)的氧化铝(al2o3)颗粒采用超声法分散到工业纯镁粉中,并采用压-烧结-挤压技术进行加工。氧化颗粒在镁合金微观结构中分散均匀,界面完整性好。分散的氧化物颗粒细化了晶粒形态。当添加量达到2.5%时,它们显著提高了镁的硬度、屈服强度、抗拉强度、延展性和断裂性能。分散的氧化物颗粒也改变了镁的断裂模式,由脆性断裂变为韧性断裂。然而,该研究还表明,当添加量为0.7 vol.%时,超细氧化物颗粒分散对改善镁的整体力学性能最有效。
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Oxide dispersion strengthened magnesium: Effect of sonicated dispersion on the microstructure and mechanical properties
In this study, ultrafine (0.3 µ m) aluminum oxide (Al 2 O 3 ) particles were dispersed into commercially pure magnesium powder using the sonication method and processed by press-sinter-extrusion technique. The oxide particles dispersion in the processed magnesium microstructure was reasonably homogeneous and with good interfacial integrity. The dispersed oxide particles refined the grain morphology. They significantly improved the hardness, yield strength, tensile strength, ductility, and work-of-fracture of magnesium when added to a vol.% of up to 2.5. The dispersed oxide particles also changed the fracture mode of magnesium from brittle to ductile nature. However, the study also revealed that the ultrafine oxide particles dispersion was most effective in improving the overall mechanical properties of magnesium when added in an amount of 0.7 vol.%.
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