Sato J, Omori T, Oikawa K, Ohnuma I, Kainuma R, Ishida K
Department of Materials Science, Graduate School of Engineering, Tohoku University, Sendai 980-8579, Japan.
Science. 2006 Apr 7;312(5770):90-1. doi: 10.1126/science.1121738.
We have identified cobalt-base superalloys showing a high-temperature strength greater than those of conventional nickel-base superalloys. The cobalt-base alloys are strengthened by a ternary compound with the L1(2) structure, gamma' Co3(Al,W), which precipitates in the disordered gamma face-centered cubic cobalt matrix with high coherency and with high melting points. We also identified a ternary compound, gamma' Ir3(Al,W), with the L1(2) structure, which suggests that the Co-Ir-Al-W-base systems with gamma+gamma' (Co,Ir)3(Al,W) structures offer great promise as candidates for next-generation high-temperature materials.
我们已经鉴定出了一些钴基高温合金,其高温强度高于传统的镍基高温合金。这些钴基合金通过一种具有L1(2)结构的三元化合物γ' Co3(Al,W)得到强化,该化合物在无序的γ面心立方钴基体中析出,具有高相干性和高熔点。我们还鉴定出了一种具有L1(2)结构的三元化合物γ' Ir3(Al,W),这表明具有γ+γ' (Co,Ir)3(Al,W)结构的Co-Ir-Al-W基体系作为下一代高温材料的候选者具有很大的潜力。