中国有色金属学报
中國有色金屬學報
중국유색금속학보
THE CHINESE JOURNAL OF NONFERROUS METALS
2015年
6期
1450-1457
,共8页
马庆爽%靳玉春%赵宇宏%侯华%王欣然%王锟
馬慶爽%靳玉春%趙宇宏%侯華%王訢然%王錕
마경상%근옥춘%조우굉%후화%왕흔연%왕곤
微观相场%Ni75Al14Mo11合金%γ′相%沉淀
微觀相場%Ni75Al14Mo11閤金%γ′相%沉澱
미관상장%Ni75Al14Mo11합금%γ′상%침정
microscopic phase-field%Ni 75 Al 14 Mo 11 alloy%γ′phase%precipitation
采用三元微观相场动力学模型,研究第一到第四层Ni-Al原子间作用势对Ni 75 Al 14 Mo 11合金沉淀过程中原子有序行为及γ′相沉淀的影响。结果表明:当第一层Ni-Al原子间作用势增大时,Al和Mo有序化和簇聚的程度和速度增大;当第二层Ni-Al原子间作用势增大时,Al和Mo有序化和簇聚的程度和速度降低;当第三层Ni-Al原子间作用势增大时,Al和Mo的有序化和簇聚的程度和速度增大,相比之下沉淀后期较大的原子间作用势对Mo的影响程度较小;第四层Ni-Al原子间作用势对Ni和Al有序化和簇聚的影响与第二层原子间作用势的影响相同。第一、三层Ni-Al原子间作用势增大,将促进γ′相的生成,且γ′相体积分数增大,而第二、四层原子间作用势对γ′相影响与第一、三层的影响效果则相反。
採用三元微觀相場動力學模型,研究第一到第四層Ni-Al原子間作用勢對Ni 75 Al 14 Mo 11閤金沉澱過程中原子有序行為及γ′相沉澱的影響。結果錶明:噹第一層Ni-Al原子間作用勢增大時,Al和Mo有序化和簇聚的程度和速度增大;噹第二層Ni-Al原子間作用勢增大時,Al和Mo有序化和簇聚的程度和速度降低;噹第三層Ni-Al原子間作用勢增大時,Al和Mo的有序化和簇聚的程度和速度增大,相比之下沉澱後期較大的原子間作用勢對Mo的影響程度較小;第四層Ni-Al原子間作用勢對Ni和Al有序化和簇聚的影響與第二層原子間作用勢的影響相同。第一、三層Ni-Al原子間作用勢增大,將促進γ′相的生成,且γ′相體積分數增大,而第二、四層原子間作用勢對γ′相影響與第一、三層的影響效果則相反。
채용삼원미관상장동역학모형,연구제일도제사층Ni-Al원자간작용세대Ni 75 Al 14 Mo 11합금침정과정중원자유서행위급γ′상침정적영향。결과표명:당제일층Ni-Al원자간작용세증대시,Al화Mo유서화화족취적정도화속도증대;당제이층Ni-Al원자간작용세증대시,Al화Mo유서화화족취적정도화속도강저;당제삼층Ni-Al원자간작용세증대시,Al화Mo적유서화화족취적정도화속도증대,상비지하침정후기교대적원자간작용세대Mo적영향정도교소;제사층Ni-Al원자간작용세대Ni화Al유서화화족취적영향여제이층원자간작용세적영향상동。제일、삼층Ni-Al원자간작용세증대,장촉진γ′상적생성,차γ′상체적분수증대,이제이、사층원자간작용세대γ′상영향여제일、삼층적영향효과칙상반。
The influence of Ni-Al interaction energy from the first layer to the fourth layer on the ordering behavior of Ni 75 Al 14 Mo 11 alloy atoms and the precipitation ofγ′phase was investigated by the microscopic phase-field kinetic model. The results show that as the first Ni-Al interaction energy increases, the ordering and the clustering degree of Al and Mo atoms increase. As the second Ni-Al interaction energy increases, the ordering and the clustering degree of Al and Mo atoms decrease. As the third Ni-Al interaction energy increase, the degree and speed of the ordering and the clustering of Al and Mo atoms increase. Compared with the early process, the larger atomic interaction in the later precipitation process has less impact on the Mo atoms. And the influence of the fourth Ni-Al interaction energy is the same with the second one. The increase of the first and the third Ni-Al interaction energy promotes the generation ofγ′phase, and the volume fraction increases, while the influences of the second and the fourth Ni-Al interatomic energy on γ′ phase are contrast to those of the first and the third ones.