论文部分内容阅读
NiAl alloy is considered to be a good candidate material for high performance, high-tempera-ture structural applications since this material offers a wide range of attractive mechanical andphysical properties, such as low density (5. 86 g/cm~3), high melting point (1 640℃), goodthermal conductivity (4--8 times compared with Ni-based superalloys) and oxidation resis-tance. However, the use of NiAl is limited by its room-temperature brittleness. Georgeand Liu have investigated the effects of microalloying elements B, C and Be on the fractureproperties and grain boundaries of NiAl alloy. Their results showed that the improvement of
High-tempera-ture structural applications since this material offers a wide range of attractive mechanical andphysical properties, such as low density (5.86 g / cm ~ 3), high melting point (1 640 ° C), goodthermal conductivity (4--8 times compared with Ni-based superalloys) and oxidation resis- tance. However, the use of NiAl is limited by its room-temperature brittleness. George and Liu have investigated the effects of microalloying elements B, C and Be on the fracture properties and grain boundaries of NiAl alloy. Their results showed that the improvement of