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《材料导报》期刊社  2017, Vol. 31 Issue (12): 93-97    https://doi.org/10.11896/j.issn.1005-023X.2017.012.020
  材料研究 |
单晶高温合金DD6不同状态下的元素分布与力学行为*
蒋睿哲, 顾玉丽, 何玉怀
北京航空材料研究院中航工业失效分析中心,航空材料检测与评价北京市重点实验室,材料检测与评价航空科技重点实验室, 北京 100095
Elements Distribution and Mechanical Behavior of Single Crystal Superalloy DD6 Under Different Processing Conditions
JIANG Ruizhe, GU Yuli, HE Yuhuai
Failure Analysis Centre, Beijing Key Laboratory of Aeronautical Materials Testing and Evaluation, Aviation Key Laboratory of Science and Technology on Aeronautical Materials Testing and Evaluation, Beijing Institute of Aeronautical Materials, Beijing 100095
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摘要 选择3 mm/min和8 mm/min两种抽拉速率通过螺旋选晶法制备[001]方向的DD6单晶高温合金,测试合金枝晶间与枝晶干的元素分布,研究了两种工艺合金的持久性能和断裂特征;利用EPMA电子探针测试了3 mm/min抽拉速率DD6合金经0.1%、0.2%、0.5%蠕变应变后枝晶间与枝晶干的元素分布,并通过纳米压痕仪测试了枝晶间与枝晶干的弹性模量和硬度。结果表明,抽拉速率较小时DD6合金枝晶组织更粗大,元素偏析程度较大,抽拉速率对合金持久寿命的影响不大;随着蠕变应变的增加,合金枝晶间与枝晶干弹性模量和硬度的差值逐渐增大,这与合金元素的再分布紧密相关,特别是与难熔元素Ta、Hf、Mo和Nb随着蠕变应变的变化而发生再分布有关。
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蒋睿哲
顾玉丽
何玉怀
关键词:  镍基单晶高温合金  元素分布  抽拉速率  蠕变  持久  螺旋选晶法    
Abstract: The element distribution between dendrite cores and interdendritic region of DD6 alloys at [001] orientation prepared by spiral grain selection method with different withdrawing rate (8 mm/min,3 mm/min) was analyzed by EPMA. The fracture characteristic and rupture life of single crystal superalloy DD6 were also investigated. The effect of creep rate (0.1%,0.2% and 0.5%) on segregation of main elements, elastic modulus and hardness of single crystal superalloy DD6 were investigated by EMPA and Hysitron Ti-950. The results showed that the alloy had coarse dendrite structure and high segregation coefficient of main elements under low withdrawing rate, and different withdrawing rate has little effect on rupture life. With the increase of creep rate, the difference of hardness and elastic modulus between dendrite cores and interdendritic increased, which was mainly caused by the element redistribution especially the redistribution of Ta, Hf, Mo and Nb.
Key words:  Ni-based single crystal superalloy    element distribution    withdrawing rate    creep    rupture life    spiral grain selection method
出版日期:  2017-06-25      发布日期:  2018-05-08
ZTFLH:  TG132.3+2  
基金资助: *航空基金民发专项(2014ZF21028)
作者简介:  蒋睿哲:男,1991年生,硕士,研究方向为DD6镍基单晶高温合金 何玉怀:男,1972年生,高级工程师,研究方向为失效分析 E-mail:li18382135800@163.com
引用本文:    
蒋睿哲, 顾玉丽, 何玉怀. 单晶高温合金DD6不同状态下的元素分布与力学行为*[J]. 《材料导报》期刊社, 2017, 31(12): 93-97.
JIANG Ruizhe, GU Yuli, HE Yuhuai. Elements Distribution and Mechanical Behavior of Single Crystal Superalloy DD6 Under Different Processing Conditions. Materials Reports, 2017, 31(12): 93-97.
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https://www.mater-rep.com/CN/10.11896/j.issn.1005-023X.2017.012.020  或          https://www.mater-rep.com/CN/Y2017/V31/I12/93
1 黄爱华,崔树生,王少刚,等.镍基单晶高温合金的发展概况[C]//第12届中国铸造年会暨2011中国铸造活动周论文集.广州,2011.
2 Chen R Z. Development status of single crystal superalloy[J]. J Mater Eng,1995(8):3(in Chinese).
陈荣章.单晶高温合金发展现状[J].材料工程,1995(8):3.
3 Wang K G, Li J R, Cao C S. Present situation of study on creep behavior of single crystal superalloys[J]. J Mater Eng,2004(1):3(in Chinese).
王开国,李嘉荣,曹春晓.单晶高温合金蠕变研究现状[J].材料工程,2004(1):3.
4 Zhang J, Zhao Y S, Luo Y S, et al. Creep behavior of a nickel-base single crystal superalloy[J]. J Aeronaut Mater,2013,33(3):1(in Chinese).
张剑,赵云松,骆宇时,等.一种镍基单晶高温合金的蠕变行为[J].航空材料学报,2013,33(3):1.
5 Yang D Y, Zhang X, Jin T, et al. The influence of cobalt, tungsten and titanium on stress-rupture properties of nickel-base single crystal superalloy[J]. Rare Met Mater Eng,2005,34(8):1295(in Chinese).
阳大云,张炫,金涛,等. 钴、钨和钛对镍基单晶高温合金持久性能的影响[J].稀有金属材料及工程,2005,34(8):1295.
6 Giamei A F, Anton D L. Re addition to a Ni-base superalloy: Effect on microstructure[J].Met Trans A,1985,16(11):1997.
7 Blavette D, Caron P, Khan T. An atom probe study of some fine scale microstructure feature in Ni-base SC superalloy[M]// Reichman, et al. Eds. Superalloy 1988. Pittsburgh, PA: TMS,1988:305.
8 Peng Z F, Ren Y Y, Luo Y S, et al. Characteristics of microstructure and element distribution of nickel-base single crystal superalloy CMSX-2 after high temperature creep[J]. Acta Metall Sin,2002,38(2):135(in Chinese).
彭志方,任遥遥,骆宇时,等.镍基单晶高温合金CMSX-2高温蠕变后的显微组织及合金元素分布特征[J].金属学报,2002,38(2):135.
9 Wukusick C S, Leo B. Consists of chromium, molybdenum, tita-nium, aluminum, cobalt, tungsten, thenium, niobium vanadium, hafnium and balance nikel; high termperature stress oxidation and corrosion resistance: US,5154884[P]. 1992-10-13.
10 Erickson G L, et al. Aero engine test experience with CMSX-4 alloy single-cristal turbine blades[J].J Eng Gas Turbines Power,1996,118:105.
11 Harris K, Erickson G L, Schwer R E. Metals Handbook[M].10th edition, eds. Davis J R, et al. Ohio: ASM Int,1991:995.
12 Zhang M J, Luo Y S, Xiao C B, et al. Effect of withdrawing rate on microstructure of single crystal superalloy DD6[J]. J Mater Eng,2010(11):8(in Chinese).
张明军,骆宇时,肖程波,等.抽拉速率对DD6单晶高温合金组织的影响[J].材料工程,2010(11):8.
13 Liu W W, Tang D Z. Effect of withdrawing rate on solidification microstructure of single crystal superalloy DD6[J]. J Mater Eng,2006(1):16(in Chinese).
刘维维,唐定中.抽拉速率对DD6单晶高温合金凝固组织的影响[J].材料工程,2006(1):16.
14 Zhang X Y, Liu L, Huang T W, et al. Effect of solidification parameters on the segregation and γ/γ′ eutectic evolution in Ni-based single crystal superalloy DD6 [J]. Rare Met Mater Eng,2013,42 (12):2547(in Chinese).
张晓越,刘林,黄太文,等.凝固参数对DD6偏析和γ/γ′共晶组织演化的影响[J].稀有金属材料与工程,2013,42(12):2547.
15 Kassner M E, Hayes H A. Creep cavitation in metals[J]. Int J Plast,2003,19:1715.
16 Caron P, Khan T. Improvement of creep strength in a nickel-base single-crystal superalloy by heat treatment [J]. Mater Sci Eng,1983,61:173.
17 Durst K, Goken M. Micromechanical characterization of the inf-luence of rhenium on the mechanical properties in nickel-base superalloys[J]. Mater Sci Eng A,2004,387(1):312.
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