Understanding mechanisms of grain refinement of aluminium alloys by inoculation

被引:183
作者
Quested, TE [1 ]
机构
[1] Univ Cambridge, Dept Mat Sci & Met, Cambridge CB2 3QZ, England
关键词
grain refinement; aluminium alloys; TiB2; solutal growth restriction; poisoning; particle size;
D O I
10.1179/026708304225022359
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
For over half a century, grain refinement of aluminium alloys has been achieved by chemical inoculation; current grain-refinement practice involves the addition of master alloys (e.g. Al-Ti-B, Al-Ti-C) before casting, introducing inoculant particles to the melt. These particles act as nucleation points for alpha-Al grains, resulting in a uniformly fine, equiaxed as cast microstructure. Despite the ubiquity of this process, its underpinning science was not fully understood, hindering development of the area. From the 1950s onwards, the phase responsible for nucleation in alloys refined by Al-Ti-B was fiercely disputed. The debate focused so closely on this issue that other important factors were frequently ignored. During the 1990s, this debate was resolved through careful thermodynamic reasoning and novel experiments that derived their inspiration far from the foundry. This review focuses on subsequent experimental work and modelling: the expansion of the current understanding of grain refinement to include effects relating to the release of latent heat, the size distribution of inoculant particles and the alloying elements present in the melt (through poisoning and growth-restriction effects). The current contention regarding the nature of the interface between the nucleant phase (TiB2) and the melt is also discussed. These recent advancements have lead to improvements in grain refining practice resulting in savings in the foundry and development of alternative master alloys for aluminium systems. The ideas have also been successfully applied to other metallic systems, notably magnesium and zinc alloys.
引用
收藏
页码:1357 / 1369
页数:13
相关论文
共 108 条
[1]  
AARON HB, 1970, J APPL PHYS, V41, P4405
[2]  
ABDELHAMID AA, 1989, Z METALLKD, V80, P566
[3]   EFFECT OF SOLUTE CONTENT ON THE GRAIN-REFINEMENT OF BINARY-ALLOYS [J].
ABDELREIHIM, M ;
HESS, N ;
REIF, W ;
BIRCH, MEJ .
JOURNAL OF MATERIALS SCIENCE, 1987, 22 (01) :213-218
[4]  
[Anonymous], 1987, STAND TEST PROC AL A
[5]   GRAIN-REFINEMENT OF ALUMINUM .3. EVIDENCE OF METASTABLE PHASE IN AL-TI-(B) SYSTEM [J].
ARNBERG, L ;
BACKERUD, L ;
KLANG, H .
METALS TECHNOLOGY, 1982, 9 (JAN) :14-17
[6]   GRAIN-REFINEMENT OF ALUMINUM .2. INTERMETALLIC PARTICLES IN AL-TI-B-TYPE MASTER ALLOYS FOR GRAIN-REFINEMENT OF ALUMINUM [J].
ARNBERG, L ;
BACKERUD, L ;
KLANG, H .
METALS TECHNOLOGY, 1982, 9 (JAN) :7-13
[7]  
Backerud L., 1991, ALUMINIUM, V67, P910
[8]   GRAIN-REFINEMENT OF ALUMINUM BY TIC [J].
BANERJI, A ;
REIF, W .
METALLURGICAL TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 1985, 16 (11) :2065-2068
[9]   Grain refinement by Al-Ti-B alloys in aluminium melts: a study of the mechanisms of poisoning by zirconium [J].
Bunn, AM ;
Schumacher, P ;
Kearns, MA ;
Boothroyd, CB ;
Greer, AL .
MATERIALS SCIENCE AND TECHNOLOGY, 1999, 15 (10) :1115-1123
[10]  
Bunn AM, 1998, LIGHT METALS 1998, P963