|
|
单晶高温合金表面缺陷焊接修复的研究进展 |
郎振乾, 叶政, 杨健, 黄继华( ) |
北京科技大学材料科学与工程学院 北京 100083 |
|
Research Progress of Repair Technology for Surface Defects of Single Crystal Superalloy |
LANG Zhenqian, YE Zheng, YANG Jian, HUANG Jihua( ) |
School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China |
引用本文:
郎振乾, 叶政, 杨健, 黄继华. 单晶高温合金表面缺陷焊接修复的研究进展[J]. 材料研究学报, 2021, 35(3): 161-174.
Zhenqian LANG,
Zheng YE,
Jian YANG,
Jihua HUANG.
Research Progress of Repair Technology for Surface Defects of Single Crystal Superalloy[J]. Chinese Journal of Materials Research, 2021, 35(3): 161-174.
1 |
Xia W S, Zhao X B, Yue L, et al. Microstructural evolution and creep mechanisms in Ni-based single crystal superalloys: A review [J]. J. Alloy. Compd., 2020, 819: 152954
|
2 |
Zhang J, Wang L, Wang D, et al. Recent progress in research and development of nickel-based single crystal superalloys [J]. Acta Metall. Sin., 2019, 55(9): 1077
|
2 |
张健, 王莉, 王栋等. 镍基单晶高温合金的研发进展 [J]. 金属学报, 2019, 55(9): 1077
|
3 |
Gallardo J M, Rodríguez J A, Herrera E J. Failure of gas turbine blades [J]. Wear, 2002, 252(3-4): 264
|
4 |
Viswanathan I, Gandy D, Findlan S. Power industry experiences surge in welding research [J]. Weld. J., 2003, 82(9): 40
|
5 |
Jiang K H, Chen J W, Jing F L, et al. Thermomechanical fatigue on the nickel based single crystal superalloy DD6 with film cooling hole [J]. Journal of Aerospace Power, 2019, 34(5): 980
|
5 |
蒋康河, 陈竞炜, 荆甫雷等. 镍基单晶高温合金DD6气膜孔热机械疲劳试验 [J]. 航空动力学报, 2019, 34(5): 980
|
6 |
Cervellon A, Hémery S, Kürnsteiner P, et al. Crack initiation mechanisms during very high cycle fatigue of Ni-based single crystal superalloys at high temperature [J]. Acta Mater., 2020, 188: 131
|
7 |
Liu Y, Yu J J, Xu Y, et al. Thermal fatigue behavior of single-crystal superalloy [J]. Rare Metal Mat. Eng., 2009, 38(1): 59
|
7 |
刘源, 于金江, 徐岩等. 单晶高温合金的冷热疲劳裂纹生长行为研究 [J]. 稀有金属材料与工程, 2009, 38(1): 59
|
8 |
Zhang J, Zhao Y S, Jia Y L, et al. Thermo-mechanical fatigue behaviors of a nickel-base single crystal superalloy [J]. Materials for Mechanical Engineering, 2013, 37(8): 41
|
8 |
张剑, 赵云松, 贾玉亮等. 一种镍基单晶高温合金的热机械疲劳行为 [J]. 机械工程材料, 2013, 37(8): 41
|
9 |
Hong H U, Kang J G, Choi B G, et al. A comparative study on thermomechanical and low cycle fatigue failures of a single crystal nickel-based superalloy [J]. Int. J. Fatigue, 2011, 33(12): 1592
|
10 |
Zhang Y L, Wang X G, Li J G, et al. The low-cycle fatigue deformation mechanisms of two single crystal superalloys at room temperature and 600℃ [J]. Scr. Mater., 2019, 171: 122
|
11 |
Pei H Q, Wen Z X, Wang Z H, et al. Transient thermal fatigue crack propagation behavior of a nickel-based single-crystal superalloy [J]. Int. J. Fatigue, 2020, 131: 105303
|
12 |
Chen X S, Sakaguchi M. Transition behavior from Mode I cracking to crystallographic cracking in a Ni-base single crystal superalloy [J]. Int. J. Fatigue, 2020, 132: 105400
|
13 |
Montero X, Ishida A, Meissner T M, et al. Effect of surface treatment and crystal orientation on hot corrosion of a Ni-based single-crystal superalloy [J]. Corrosion Sci., 2020, 166: 108472
|
14 |
Shi Z X, Liu S Z, Wang X G, et al. Corrosion behavior of the second generation single crystal superalloy DD6 in hot gas [J] J. Iron Steel Res., 2015, 27(5): 61
|
14 |
史振学, 刘世忠, 王效光等. 第2代单晶高温合金DD6的燃气热腐蚀行为 [J]. 钢铁研究学报, 2015, 27(5): 61
|
15 |
Eliaz N, Shemesh G, Latanision R M. Hot corrosion in gas turbine components [J]. Eng. Fail. Anal., 2002, 9(1): 31
|
16 |
Ma C Y, Tian Z L, Du Z Y, et al. Effect of heat input on structure and mechanical properties of welded joint in a 800 MPa grade RPC steel [J]. Transactions of The China Welding Institution, 2004, 25(2): 23
|
16 |
马成勇, 田志凌, 杜则裕等. 热输入对800 MPa级钢接头组织及性能的影响 [J]. 焊接学报, 2004, 25(2): 23
|
17 |
Fujita Y, Saida K, Nishimoto K. Study of microstructure in surface-melted region of Ni-base single crystal superalloy CMSX-4 [J]. Materials Science Forum, 2006, 512: 313
|
18 |
Anderson T D, Dupont J N, Debroy T, et al. Stray grain formation in welds of single-crystal Ni-base superalloy CMSX-4 [J]. Metall. Mater. Trans. A-Phys. Metall. Mater. Sci., 2010, 41A(1): 181
|
19 |
Anderson T D, Dupont J N. Stray grain formation and solidification cracking susceptibility of single crystal Ni-base superalloy CMSX-4 [J]. Weld. J., 2011, 90(2): 27s
|
20 |
Babu S S, David S A, Park J W, et al. Joining of nickel base superalloy single crystals [J]. Sci. Technol. Weld. Join., 2013, 9(1): 1
|
21 |
Liburdi J, Lowden P, Pilcher C. Automated welding of turbine blades [A]. ASME 1989 International Gas Turbine and Aeroengine Congress and Exposition [C]. Toronto, 1989
|
22 |
Churchman C, Bonifaz E A, Richards N L. Comparison of single crystal Ni based superalloy repair by gas tungsten arc and electron beam processes [J]. Mater. Sci. Technol., 2011, 27(4): 811
|
23 |
Sidhu R K, Ojo O A, Richards N L, et al. Metallographic and OIM study of weld cracking in GTA weld build-up of polycrystalline, directionally solidified and single crystal Ni based superalloys [J]. Sci. Technol. Weld. Join., 2009, 14(2): 125
|
24 |
Chauvet E, Tassin C, Blandin J, et al. Producing Ni-base superalloys single crystal by selective electron beam melting [J]. Scr. Mater., 2018, 152: 15
|
25 |
Guercio D G, Galati M, Saboori A, et al. Microstructure and mechanical performance of Ti-6Al-4V lattice structures manufactured via electron beam melting (EBM): a review [J]. Acta Metall. Sin.Engl. Lett., 2020, 33(2): 183
|
26 |
Huang Y D, Zeng Z Q, Cai Z P, et al. Influence of electron beam thermal effect on cracks formation in fused region of single crystal superalloys DD407 [J]. Rare Metal Mat. Eng., 2017, 46(7): 1920
|
26 |
黄永德, 曾志强, 蔡祖鹏等. 电子束热作用对DD407单晶熔凝区裂纹形成的影响 [J]. 稀有金属材料与工程, 2017, 46(7): 1920
|
27 |
David S A, Vitek J M, Babu S S, et al. Welding of nickel base superalloy single crystals [J]. Sci. Technol. Weld. Join., 1997, 2(2): 79
|
28 |
Wang L, Wang N, Yao W J, et al. Effect of substrate orientation on the columnar-to-equiaxed transition in laser surface remelted single crystal superalloys [J]. Acta Mater., 2015, 88: 283
|
29 |
Wang L, Wang N. Effect of substrate orientation on the formation of equiaxed stray grains in laser surface remelted single crystal superalloys: experimental investigation [J]. Acta Mater., 2016, 104: 250
|
30 |
Mokadem S, Bezençon C, Hauert A, et al. Laser repair of superalloy single crystals with varying substrate orientations [J]. Metall. Mater. Trans. A-Phys. Metall. Mater. Sci., 2007, 38(7): 1500
|
31 |
Liu W P, Dupont J N. Effects of melt-pool geometry on crystal growth and microstructure development in laser surface-melted superalloy single crystals: mathematical modeling of single-crystal growth in a melt pool (part I) [J]. Acta Mater., 2004, 52(16): 4833
|
32 |
Park J W, Vitek J M, Babu S S, et al. Stray grain formation, thermomechanical stress and solidification cracking in single crystal nickel base superalloy welds [J]. Sci. Technol. Weld. Join., 2004, 9(6): 472
|
33 |
Vitek J M, David S A, Boatner L A. Microstructural development in single crystal nickel base superalloy welds [J]. Sci. Technol. Weld. Join., 1997, 2(3): 109
|
34 |
Park J W, Babu S S, Vitek J M, et al. Stray grain formation in single crystal Ni-base superalloy welds [J]. J. Appl. Phys., 2003, 94(6): 4203
|
35 |
Vitek J M. The effect of welding conditions on stray grain formation in single crystal welds-theoretical analysis [J]. Acta Mater., 2005, 53(1): 53
|
36 |
Chen H, Lu Y Y, Luo D, et al. Epitaxial laser deposition of single crystal Ni-based superalloys: repair of complex geometry [J]. J. Mater. Process. Technol., 2020, 285: 116782
|
37 |
Chen H, Huang G S, Lu Y Y, et al. Epitaxial laser deposition of single crystal Ni-based superalloy: variation of stray grains [J]. Mater. Charact., 2019, 158: 109982
|
38 |
Zhang Q M, Wang Z D, Liu X M, et al. Influence of processing parameters on geometrical features of powder feeding laser cladding [J]. Transactions of The China Welding Institution, 2000, 21(2): 43
|
38 |
张庆茂, 王忠东, 刘喜明等. 工艺参数对送粉激光熔覆层几何形貌的影响 [J]. 焊接学报. 2000, 21(2): 43
|
39 |
Zhou Z P, Huang L, Shang Y J, et al. Causes analysis on cracks in nickel-based single crystal superalloy fabricated by laser powder deposition additive manufacturing [J]. Mater. Des., 2018, 160: 1238
|
40 |
Ci S W, Liang J J, Li J G, et al. Microstructure and tensile properties of DD32 single crystal Ni-base superalloy repaired by laser metal forming [J]. J. Mater. Sci. Technol., 2020, 45: 23
|
41 |
Felberbaum L, Voisey K, Gäumann M, et al. Thermal fatigue of single-crystalline superalloy CMSX-4®: a comparison of epitaxial laser-deposited material with the base single crystal [J]. Mater. Sci. Eng. A-Struct. Mater. Prop. Microstruct. Process., 2001, 299(1-2): 152
|
42 |
Kaierle S, Overmeyer L, Alfred I, et al. Single-crystal turbine blade tip repair by laser cladding and remelting [J]. CIRP Journal of Manufacturing Science and Technology, 2017, 19: 196
|
43 |
Gäumann M, Henry S, Cléton F, et al. Epitaxial laser metal forming: analysis of microstructure formation [J]. Mater. Sci. Eng. A-Struct. Mater. Prop. Microstruct. Process., 1999, 271(1-2): 232
|
44 |
Luo D, Lu Y Y, Guo X X, et al. Laser repairing process of V-groove in single-crystal superalloy [J]. Chin. J. Las., 2016, 43(5): 37
|
44 |
罗登, 路媛媛, 郭溪溪等. 单晶高温合金V槽的激光修复工艺研究 [J]. 中国激光, 2016, 43(5): 37
|
45 |
Vilar R, Almeida A. Repair and manufacturing of single crystal Ni-based superalloys components by laser powder deposition—A review [J]. J. Laser Appl., 2015, 27(spec. issue): S17004.
|
46 |
Wang N, Mokadem S, Rappaz M, et al. Solidification cracking of superalloy single- and bi-crystals [J]. Acta Mater., 2004, 52(11): 3173
|
47 |
Liu W, Dupont J N. Effects of substrate crystallographic orientations on crystal growth and microstructure development in laser surface-melted superalloy single crystals: mathematical modeling of single-crystal growth in a melt pool (Part II) [J]. Acta Mater., 2005, 53(5): 1545
|
48 |
Anderson T D, Dupont J N, Debroy T. Origin of stray grain formation in single-crystal superalloy weld pools from heat transfer and fluid flow modeling [J]. Acta Mater., 2010, 58(4): 1441
|
49 |
Gäumann M, Bezençon C, Canalis P, et al. Single-crystal laser deposition of superalloys: processing-microstructure maps [J]. Acta Mater., 2001, 49(6): 1051
|
50 |
Kurz W, Bezençon C, Gäumann M. Columnar to equiaxed transition in solidification processing [J]. Sci. Technol. Adv. Mater., 2001, 2(1): 185
|
51 |
Boris R; Christian N; Stefan K, et al. Crack repair of single crystal turbine blades using laser cladding technology [A]. Proceedings of the 3rd International Conference In Through-Life Engineering Services [C]. Cranfield, 2014
|
52 |
Liu D, Song Y Y, Shi B, et al. Vacuum brazing of GH99 superalloy using graphene reinforced BNi-2 composite filler [J]. J. Mater. Sci. Technol., 2018, 34(10): 1843
|
53 |
Dong K W, Kong J, Yang Y, et al. Vacuum brazing of TiAl-based alloy and GH536 superalloy with a low-melting point amorphous Ti35Zr25Be30Co10 filler [J]. J. Manuf. Process., 2019, 47: 410
|
54 |
Sun Y, Liu J D, Li B, et al. Microstructure evolution of single crystal superalloy DD5 joints brazed using AWS BNi-2 filler alloy [J]. Mater. Res. Innov., 2014, 18(): 341
|
55 |
Sun Y, Liu J D, Liu Z M, et al. Microstructure evolution and mechanical properties of DD5 single crystal superalloy joint brazed by Co-based filler alloy [J]. Acta Metall. Sin., 2013, 49(12): 1581
|
55 |
孙元, 刘纪德, 刘忠明等. 钴基钎料钎焊DD5单晶高温合金的接头微观组织演变与力学性能研究 [J]. 金属学报, 2013, 49(12): 1581
|
56 |
Chai L, Hou J B. Effect of Si content in filler metal on microstructure and creep rupture properties of N5 crystal brazed joints [J]. Heat Treatment of Metals, 2017, 42(3): 143
|
56 |
柴禄, 侯金保. 钎料Si含量对N5单晶钎焊接头组织和持久性能的影响 [J]. 金属热处理, 2017, 42(3): 143
|
57 |
Laux B, Piegert S, Rösler J. et al. Braze alloy development for fast epitaxial high-temperature brazing of single-crystalline nickel-based superalloys [J]. Metall. Mater. Trans. A, 2009, 40A(1): 138
|
58 |
Laux B, Piegert S, Rösler J. Fast epitaxial high temperature brazing of single crystalline nickel based superalloys [J]. J. Eng. Gas Turbines Power, 2009, 131(3): 032102
|
59 |
Laux B, Piegert S, Rösler J. Advanced braze alloys for fast epitaxial high-temperature brazing of single-crystalline nickel-base superalloys [J]. J. Eng. Gas Turbines. Power, 2008, 132(3): 32101.
|
60 |
Gale W F, Butts D A. Transient liquid phase bonding [J]. Sci. Technol. Weld. Join., 2004, 9(4): 283
|
61 |
Chai L, Huang J H, Hou J B, et al. Effect of holding time on microstructure and properties of transient liquid-phase-bonded joints of a single crystal alloy [J]. J. Mater. Eng. Perform., 2015, 24(6): 2287
|
62 |
Sheng N C, Hu X B, Liu J D, et al. M3B2 and M5B3 formation in diffusion-affected zone during transient liquid phase bonding single-crystal superalloys [J]. Metall. Mater. Trans. A-Phys. Metall. Mater. Sci., 2015, 46(4): 1670
|
63 |
Sheng N C, Liu J D, Jin T, et al. Wide gap TLP bonding a single-crystal superalloy: evolution of the L/S interface morphology and formation of the isolated grain boundaries [J]. Metall. Mater. Trans. A-Phys. Metall. Mater. Sci., 2013, 44(4): 1793
|
64 |
Hu X B, Sheng N C, Zhu Y M, et al. Atomic-scale investigation of the borides precipitated in a transient liquid phase-bonded Ni-based superalloy [J]. Metall. Mater. Trans. A-Phys. Metall. Mater. Sci., 2020, 51(4): 1689
|
65 |
Sheng N, Liu J D, Jin T, et al. Precipitation behaviors in the diffusion affected zone of TLP bonded single crystal superalloy joint [J]. J. Mater. Sci. Technol., 2015, 31(2): 129
|
66 |
Heinz P, Volek A, Singer R F, et al. Diffusion brazing of single crystalline nickel base superalloys using boron free nickel base braze alloys [A]. Diffusion in Solids and Liquids III [C]. Algarve, 2008
|
67 |
Neumeier S, Dinkel M, Pyczak F, et al. Nanoindentation and XRD investigations of single crystalline Ni-Ge brazed nickel-base superalloys PWA 1483 and René N5 [J]. Mater. Sci. Eng. A-Struct. Mater. Prop. Microstruct. Process., 2011, 528(3): 815
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
|
Shared |
|
|
|
|
|
Discussed |
|
|
|
|