金属学报
金屬學報
금속학보
ACTA METALLURGICA SINICA
2009年
11期
1344-1348
,共5页
赵九洲%李海丽%王青亮%赵雷%何杰
趙九洲%李海麗%王青亮%趙雷%何傑
조구주%리해려%왕청량%조뢰%하걸
Al-Pb合金%凝固%磁场%对流
Al-Pb閤金%凝固%磁場%對流
Al-Pb합금%응고%자장%대류
Al Pb alloy%solidification%magnetic field%convection
在恒定磁场作用下对Al-Pb合金进行了快速定向凝固实验,考察了磁场强度对凝固组织的影响,分析了磁场的作用机理.结果表明,恒定磁场能显著减弱熔体对流,提高凝固界面前沿液-液相变过程的空间均匀性,减缓液滴的碰撞凝并速度,使凝固试样中的弥散相粒子最大和平均尺寸减小,粒子尺寸分析布范围变窄,有助于获得弥散型偏晶合金凝固组织.
在恆定磁場作用下對Al-Pb閤金進行瞭快速定嚮凝固實驗,攷察瞭磁場彊度對凝固組織的影響,分析瞭磁場的作用機理.結果錶明,恆定磁場能顯著減弱鎔體對流,提高凝固界麵前沿液-液相變過程的空間均勻性,減緩液滴的踫撞凝併速度,使凝固試樣中的瀰散相粒子最大和平均呎吋減小,粒子呎吋分析佈範圍變窄,有助于穫得瀰散型偏晶閤金凝固組織.
재항정자장작용하대Al-Pb합금진행료쾌속정향응고실험,고찰료자장강도대응고조직적영향,분석료자장적작용궤리.결과표명,항정자장능현저감약용체대류,제고응고계면전연액-액상변과정적공간균균성,감완액적적팽당응병속도,사응고시양중적미산상입자최대화평균척촌감소,입자척촌분석포범위변착,유조우획득미산형편정합금응고조직.
The effect of a static magnetic field on the solidification of monotectic alloy has attracted great attentions. But up to date little is known about the details of the magnetic field influences on the microstructure development during the solidification of a monotectic alloy. In this paper, rapid directional solidification experiments are carried out with Al-Pb alloys under a static magnetic field. The dependence of the solidification microstructure on the intensity of the magnetic field is investigated. The mechanism through which the magnetic field affects the microstructure forlnation is analyzed. It is indicated that the static magnetic field cruises only a small decrease in the Marangoni migration velocity and the Stokes settlement velocity of the minority phase droplets during the liquid-liquid decomposition. Such a small change in the moving velocity of the droplets has only a negligible effect on the microstructure formation. The static magnetic field can suppress the convection efficiently. It enhances the spatial homogeneity of the liquid-liquid phase transformation along the radial direction of the sample, reduccs the collision and coagulation frequency betwecn the minority phase droplets and, therefore, causes a decrease in the largest and average sizes of the Pb-rich particles in the solidified sample as well as in the width of the particles size distribution. A static magnetic field is favorable for obtaining a inonotectic alloy with well dispersed microstructure.