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Effect of Undercooling on Microstructure Evolution in IN718 Superalloy
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Effect of Undercooling on Microstructure Evolution in IN718 Superalloy
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National Natural Science Foundation of China (50931004); “973” Program (2011CB610406)

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    摘要:

    采用復合熔鹽凈化法進行了IN718高溫合金快速凝固研究,獲得了250 K的大過冷度,研究了合金深過冷凝固的組織演化過程。結(jié)合BCT模型,分析了合金凝固與組織轉(zhuǎn)變機制。結(jié)果表明,過冷IN718高溫合金的組織形貌受到熔體過冷度大小的影響。在0~250 K過冷度范圍內(nèi),IN718高溫合金凝固組織將發(fā)生兩次晶粒細化:當0 K≤ΔT<63 K,凝固組織發(fā)生了第1次晶粒細化;當63 K≤ΔT<90 K,發(fā)生第2次晶粒細化,隨著過冷度的增大,凝固組織發(fā)生粗化;當90 K≤ΔT<250 K,凝固組織由樹枝晶向粒狀晶轉(zhuǎn)變,晶粒明顯細化,平均晶粒尺寸達到5.5 μm。

    Abstract:

    The method of molten salt denucleating was applied to study the rapid solidification of IN718 superalloy. The highest undercooling up to 250 K was produced, and the microstructure evolution with undercooling was investigated. Based on the calculations of the dendritic tip radius, the dendrite growth velocity and undercooling, the solidification behavior and structure transition mechanisms were analyzed by adopting BCT dendrite growth model. Result show that the solidification morphologies of the undercooled IN718 superalloy are dependent on the degree of undercooling. Within the achieved undercooling, 0~250 K, the solidification microstructure of IN718 undergoes twice grain refinement. When 0 K≤ΔT<63 K, it is the first grain refinement; when 63 K≤ΔT<90 K, with the increasing of undercooling, grain coarsening comes into being; when 90 K≤ΔT<250 K, it is the second grain refinement, and aforementioned dendritic structure transforms into granular grain with average grain size about 5.5 μm

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彭子超,謝發(fā)勤,張 軍,吳向清. Effect of Undercooling on Microstructure Evolution in IN718 Superalloy[J].稀有金屬材料與工程,2013,42(10):1988~1992.[Peng Zichao, Xie Faqin, Zhang Jun, Wu Xiangqing. Effect of Undercooling on Microstructure Evolution in IN718 Superalloy[J]. Rare Metal Materials and Engineering,2013,42(10):1988~1992.]
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  • 收稿日期:2012-09-25
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