Effect of nodule count and austempering heat treatment on segregation behavior of alloying elements in ductile cast iron

被引:0
作者
E. Akbarzadeh Chiniforush
N. Iranipour
S. Yazdani
机构
[1] Sahand University of Technology,Faculty of Materials Engineering
[2] Deakin University,Institute for Technology Research and Innovation
来源
China Foundry | 2016年 / 13卷
关键词
segregation; ductile iron; austenitization; austempering; TG143.5;
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学科分类号
摘要
The equilibrium partition ratio, k, has been measured for Mn, Mo, Si, Ni and Cu in a ductile iron with composition (wt.%): 3.45C, 0.25Mn, 0.25Mo, 2.45Si, 0.5Ni and 0.5Cu with different nodule counts obtained from different section sizes of 13, 25, 75 mm in the as cast, austenitized (at 870 °C for times 1, 4 and 6 hours) and austempered (at 375 °C for times 1 to 1,440 min) samples. Results show that Mn and Mo segregate positively at cell boundaries, but Si, Ni and Cu concentrate in an inverse manner in the vicinity of graphite nodules and there is a depletion of these elements at cell boundaries. Segregation curves for Ni and Cu are more smooth than for Si. Carbide formation has been observed at cell boundaries. Based on the results, the partition ratios for all elements decrease with increasing the nodule count. More carbide with coarser morphology has been observed in the microstructure with a lower nodule count. Austenitization for a longer time can decrease partition ratio, but cannot eliminate it entirely. Increasing the austenitization temperature has the same efect.
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页码:217 / 222
页数:5
相关论文
共 31 条
[1]  
Jolley G.(1968)Segregation During Solidification of Nodular Cast Iron, The Solidification of Metals, London Iron and Steel Inst. 110 242-250
[2]  
Faubert G. P.(1989)Heavy section ADI: microsegregation, microstructure, and tensile properties AFS Trans 97 747-756
[3]  
Moore D. J.(1985)The effect of segregation on the formation of austempered ductile iron Journal of Heat Treating 4 167-176
[4]  
Rundman K. B.(1997)Microsegregation in Spheroidal Graphite Iron: A Numerical Model and its Validation Advanced Materials Research 4–5 491-498
[5]  
Schissler J. M.(1998)The effect of segregation on the austemper transformation and toughness of ductile irons Journal of Materials Engineering and Performance 7 407-419
[6]  
Saverna J.(2012)Effect of Si segregation on low temperature toughness of ductile iron AFS Trans 120 319-326
[7]  
Chang S.(2013)Production of Austempered Ductile Iron with Optimum Sulphur level for effective Mechanical Properties The International Journal of Engineering and Science (IJES) 2 67-71
[8]  
Stefanescu D. M.(1998)The effect of segregation on the austemper transformation and toughness of ductile irons Journal of Materials Engineering and Performance 7 407-419
[9]  
Lin B. Y.(1999)Influence of molybdenum on austempering behaviour of ductile iron, Part 1–Austempering kinetics and mechanical properties of ductile iron containing 0.13% Mo Materials Science and Technology 15 531-540
[10]  
Chen E. T.(1999)Influence of molybdenum on austempering behaviour of ductile iron, Part 2–Influence of austenitising temperature on austempering kinetics, mechanical properties, and hardenability of ductile iron containing 0.13% Mo Materials Science and Technology 15 541-546