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金属学报  2009, Vol. 45 Issue (4): 385-389    
  论文 本期目录 | 过刊浏览 |
DZ125高温合金深过冷凝固组织转变规律
周俊1;谢发勤1;吴向清1;张军2
1.西北工业大学航空学院; 西安 710072
2.西北工业大学凝固技术国家重点实验室; 西安 710072
MICROSTRUCTURE TRANSITION OF SUPERCOOLED DZ125 SUPERALLOY
ZHOU Jun1; XIE Faqin1; WU Xiangqing1; ZHANG Jun2
1.School of Aeronautics; Northwestern Polytechnical University; Xi'an 710072
2.State Key Laboratory of Solidification Processing; Northwestern Polytechnical University; Xi'an 710072
引用本文:

周俊 谢发勤 吴向清 张军. DZ125高温合金深过冷凝固组织转变规律[J]. 金属学报, 2009, 45(4): 385-389.
, , , . MICROSTRUCTURE TRANSITION OF SUPERCOOLED DZ125 SUPERALLOY[J]. Acta Metall Sin, 2009, 45(4): 385-389.

全文: PDF(1243 KB)  
摘要: 

采用熔盐净化剂与循环过热相结合的方法, 获得了过冷度高达180 K的DZ125高温合金深过冷熔体, 研究了合金深过冷凝固的组织演化过程. 结果表明, 随着过冷度 ΔT的增大, 凝固组织经历3次转变过程: 当ΔT<48 K时, 合金的凝固组织为普通树枝晶; 当48 K≤ΔT<85 K时, 枝晶因再辉发生熟化和重熔, 组织转化为第I类粒状晶; 当85 K≤ΔT<160 K时, 再辉所产生的重熔效应大大降低, 凝固组织为深过冷树枝晶; 当ΔT≥160 K时, 发生枝晶破碎及再结晶,凝固组织转变为第II类粒状晶.

关键词 镍基高温合金 深过冷 过冷度 组织演化    
Abstract

Investigations of microstructural evolution in undercooled metallic melts have been extensively conducted in different alloy systems, such as eutectic, peritectic and metallic compound, however, few reports about undercooled superalloys were found up to date.  In this paper, DZ125 superalloy melt was undercooled by the method of molten salt purification combined with cycled superheating under Ar atmosphere, and a substantial undercooling up to 180 K was obtained. Based on the microstructural observation as well as the calculations of the dendritic tip radius, the dendrite growth velocity and undercooling with BCT (Boettinger, Coriell, Trivedi) dendrite growth model, the solidification behavior and structure transition mechanisms were systematically investigated. The results indicate that the microstructure undergoes three sequent transitions in the achieved range of undercooling range ΔT. When ΔT<48 K, the dendrite growth is mainly controlled by solute diffusion, and the solidification structures are the common dendrites. When 48 K≤ΔT< 85 K, the dendrites is remelted and the first kind of granular grains forms because of the serious remelting produced by recalescence. When 85≤ΔT<160 K, the effect of solute diffusion is weakened by solute trapping that results from high dendrite growth velocity, thermal diffusion plays the dominate role at the same time, the remelting effect decreases to a low level, and ripenings of dendrite are restrained, the granular grains turn into highly developed fine dendrites. WhenΔT>160 K, the second kind of granular grains is formed, the transition is caused by the stress originating from the rapid solidification contraction, which results in the recrystallization of the fine dendrite.

Key wordsNi base superalloy    supercooling    supercooling degree    microstructure transition
收稿日期: 2008-08-01     
ZTFLH: 

TG113.12

 
作者简介: 周俊, 男, 1981年生, 博士生
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