Volume 29 Issue 5
May  2014
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AI Xing, GAO Hang-shan, WEN Zhi-xun, LIU Da-shun, YUE Zhu-feng. Creep behavior of thin-walled plate with cooling holes of nickel-based single crystal superalloy DD6 under high temperature[J]. Journal of Aerospace Power, 2014, (5): 1197-1204.
Citation: AI Xing, GAO Hang-shan, WEN Zhi-xun, LIU Da-shun, YUE Zhu-feng. Creep behavior of thin-walled plate with cooling holes of nickel-based single crystal superalloy DD6 under high temperature[J]. Journal of Aerospace Power, 2014, (5): 1197-1204.

Creep behavior of thin-walled plate with cooling holes of nickel-based single crystal superalloy DD6 under high temperature

  • Received Date: 2013-07-01
  • Publish Date: 2014-05-28
  • Thin-walled plate specimens with cooling holes were used to model the air-cooled turbine blades. Specimens without holes were employed for comparison. The effect of cooling holes on the creep life of nickel-based single crystal cooling blades was studied. Experimental results show that at 950℃, the creep lives of specimens without cooling holes are nearly twice the specimens with cooling holes when the stress is kept as 377MPa. The scanning electron microscopy(SEM) analysis on the fractured surface reveals that the creep damage stems from the local region around the holes and the ruptures initially occurs at holes edges. Based on the crystal plasticity theory, a creep model for the creep experimental data of single crystal material was developed, and implemented into the Abaqus user subroutine(UMAT) to simulate the plate specimens with and without holes. The results show that stress concentration and redistribution occur around the cooling holes, and the form of the fracture surface is consistent well with numerical analysis. For engineering application, the relationship between the creep life and the maximum resolved shear stress amplitude of dodecahedron slip system is expressed by an exponential function. The creep test result shows that the formula has good accuracy under 950℃,377MPa.

     

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  • [1]
    Scholz A, Schmide A, Walther H C, et al.Experiences in the determination of TMF, LCF and creep life of CMSX-4 in four-point bending experiment[J].International Journal of Fatigue, 2008, 30(2):357-362.
    [2]
    LI Jiarong, ZHONG Zhenggang, TANG Dingzhong, et al.A low cost second generation single crystal superalloy DD6[C]//Preceedings of 9th International Symposium of Superalloy.Pennsyvania:[s.n.], 2000:777-783.
    [3]
    YUE Zhufeng, LU Zhenzhou, ZHENG Changqing, et al.Life study of nickel-based single crystal turbine blades:viscoplastic crystallographic constitutive behavior[J].Theoretical and Applied Fracture Mechanics, 1996, 24(2):139-145.
    [4]
    岳珠峰, 于庆民, 温志勋, 等.镍基单晶涡轮叶片结构强度设计[M].北京:科学出版社, 2008.
    [5]
    Lakehal D, Theodoridis G S, Rodi W.Three-dimensional flow and heat transfer calculations of film cooling at the leading edge of a symmetrical turbine blade model[J].International Journal of Heat and Fluid Flow, 2001, 22(2):113-122.
    [6]
    Kim Y J, Kim S M.Influence of shaped injection holes on turbine blade leading edge film cooling[J].International Journal of Heat and Mass Transfer, 2004, 47(2):245-256.
    [7]
    Mazura Z, Luna-Ramíreza A, Juárez-Islasb J A, et al.Failure analysis of a gas turbine blade made of Inconel 738Lc alloy[J].Engineering Failure Analysis, 2005, 12(3):474-486.
    [8]
    Kupkovits R A, Neu R W.Thermomechanical fatigue of a directionally-solidified Ni-based superalloy:smooth and cylindrically-notched specimens[J].International Journal of Fatigue, 2010, 32(8):1330-1342.
    [9]
    HOU Naixian, WEN Zhixun, YUE Zhufeng.Creep behavior of single crystal superalloy specimen under temperature gradient condition[J].Materials Science and Engineering:A, 2009, 510/511:42-45.
    [10]
    Manonukul A, Dunne F P E, Knowles D, et al.Multiaxial creep and cyclic plasticity in nickel-based superalloy C263[J].International Journal of Plasticity, 2005, 21(1):1-20.
    [11]
    Lukáš P, Preclík P, Čadek J.Notch effects on creep behaviour of CMSX-4 superalloy single crystals[J].Materials Science and Engineering:A, 2001, 298(1/2):84-89.
    [12]
    王开国, 李嘉荣, 刘世忠, 等.DD6单晶高温合金760℃蠕变性能研究[J].材料科学与工程学报, 2004, 22(5):7-11. WANG Kaiguo, LI Jiarong, LIU Shizhong, et al.Study on creep properties of single crystal superalloy DD6 at 760℃[J].Journal of Materials Engineering, 2004, 22(5):7-11.(in Chinese)
    [13]
    卿华, 江和甫, 温卫东, 等.镍基单晶合金气冷叶片模拟试样的蠕变性能研究[J].航空动力学报, 2007, 22(5):773-778. QING Hua, JIANG Hefu, WEN Weidong, et al.Study on the creep behavior of model specimens of nickel-based single crystal air-cooled blades[J].Journal of Aerospace Power, 2007, 22(5):773-778.(in Chinese)
    [14]
    YU Qingmin, YUE Zhufeng, WEN Zhixun.Creep damage evolution in a modeling specimen of nickel-based single crystal superalloys air-cooled blades[J].Materials Science and Engineering:A, 2008, 477(1/2):319-327.
    [15]
    LIU Dashun, WANG Baizhi, WEN Zhixun, et al.The effects of cooling holes on the creep life in a modeling specimen of single crystal air-cooled turbine blade[C]//Advanced Materials Research.[S.l.], Switzerland:Trans Tech Publications, 2011:1678-1683.
    [16]
    赵明汉, 张继, 冯縧, 等.高温合金断口分析图谱[M].北京:冶金工业出版社, 2006.
    [17]
    韩梅, 骆宇时.DD3单晶高温合金的高温蠕变断裂行为[J].失效分析与预防, 2008, 3(3):28-31. HAN Mei, LUO Yushi.Creep rupture behavior of DD3 single crystal superalloy at elevated temperatures[J].Failure Analysis and Prevention, 2008, 3(3):28-31.(in Chinese)
    [18]
    Ivaylo N, Stefanie R, Gunther E.Constitutive modeling of the anisotropic creep behaviour of nickel-based single crystal superalloys[J].International Journal of Mechanical Sciences, 2009, 51(4):305-313.
    [19]
    WEN Zhixun, HOU Naixian, YUE Zhufeng.Creep behaviors of nickel-based single crystal superalloys compact tension specimen at high temperature[C]//Advanced Materials Research.[S.l.], Switzerland:Trans Tech Publications, 2011:1322-1326.
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