中国机械工程 ›› 2026, Vol. 37 ›› Issue (2): 315-331.DOI: 10.3969/j.issn.1004-132X.2026.02.007
• 机械基础工程 • 上一篇
孙蕴齐1,2(
), 姚倡锋1,2,3(
), 孙换凤4, 谭靓1,2,3
收稿日期:2025-03-03
出版日期:2026-02-25
发布日期:2026-03-13
通讯作者:
姚倡锋
作者简介:孙蕴齐,男,1994年生,博士研究生。研究方向为整体叶盘多工艺复合加工表面完整性控制。E-mail:yqsun@mail.nwpu.edu.cn基金资助:
SUN Yunqi1,2(
), YAO Changfeng1,2,3(
), SUN Huanfeng4, TAN Liang1,2,3
Received:2025-03-03
Online:2026-02-25
Published:2026-03-13
Contact:
YAO Changfeng
摘要:
高温合金是航空发动机关键构件的重要材料,喷丸加工是叶片类零件工艺过程的关键环节,通过弹丸在工件表面的高速撞击,能够在表层引入残余压应力,从而抵消部分工作载荷,提高构件的疲劳性能,因此,研究高温合金喷丸工艺对改善航空发动机关键构件的使役性能与可靠性有重要意义。针对喷丸工艺模拟方法、高温合金喷丸表面完整性和高温合金喷丸疲劳性能三方面的研究成果,介绍了高温合金喷丸工艺的研究现状,分析了现有研究存在的一些不足,并指出了未来的研究方向。
中图分类号:
孙蕴齐, 姚倡锋, 孙换凤, 谭靓. 高温合金喷丸工艺表面完整性及其疲劳性能研究进展[J]. 中国机械工程, 2026, 37(2): 315-331.
SUN Yunqi, YAO Changfeng, SUN Huanfeng, TAN Liang. Research Progresses of Surface Integrity and Fatigue Performance for High-temperature Alloy Shot Peening Processes[J]. China Mechanical Engineering, 2026, 37(2): 315-331.
图13 不同喷丸强度下FGH4113A高温合金亚表层的金相组织[43]
Fig.13 Metallographic structure of sub surface layer of FGH4113A high-temperature alloy under different shot peening intensities[43]
图14 喷丸与振动光饰复合处理GH4169高温合金的疲劳断口形貌[46]
Fig.14 Fatigue fracture morphology of GH4169 high-temperature alloy treated with shot peening and vibration finishing decoration composite[46]
| [1] | WU Daoxia, ZHANG Dinghua, YAO Changfeng. Effect of Turning and Surface Polishing Treatments on Surface Integrity and Fatigue Performance of Nickel-based Alloy GH4169[J]. Metals, 2018, 8(7): 549. |
| [2] | SUÁREZ A, VEIGA F, de LACALLE L N L, et al. Effects of Ultrasonics-assisted Face Milling on Surface Integrity and Fatigue Life of Ni-alloy 718[J]. Journal of Materials Engineering and Performance, 2016, 25(11): 5076-5086. |
| [3] | MALEKI E, UNAL O. Optimization of Shot Peening Effective Parameters on Surface Hardness Improvement[J]. Metals and Materials International, 2021, 27(9): 3173-3185. |
| [4] | GALLITELLI D, BOYER V, GELINEAU M, et al. Simulation of Shot Peening: from Process Parameters to Residual Stress Fields in a Structure[J]. Comptes Rendus Mécanique, 2016, 344(4/5): 355-374. |
| [5] | GHASEMI A, HASSANI-GANGARAJ S M, MAHMOUDI A H, et al. Shot Peening Coverage Effect on Residual Stress Profile by FE Random Impact Analysis[J]. Surface Engineering, 2016, 32(11): 861-870. |
| [6] | WANG Cheng, HU Jiacheng, GU Zhenbiao, et al. Simulation on Residual Stress of Shot Peening Based on a Symmetrical Cell Model[J]. Chinese Journal of Mechanical Engineering, 2017, 30(2): 344-351. |
| [7] | PHAM T Q, KHUN N W, BUTLER D L. New Approach to Estimate Coverage Parameter in 3D FEM Shot Peening Simulation[J]. Surface Engineering, 2017, 33(9): 687-695. |
| [8] | GARIÉPY A, MIAO H Y, LÉVESQUE M. Simulation of the Shot Peening Process with Variable Shot Diameters and Impacting Velocities[J]. Advances in Engineering Software, 2017, 114: 121-133. |
| [9] | PUROHIT R, VERMA C S, RANA R S, et al. Simulation of Shot Peening Process[J]. Materials Today: Proceedings, 2017, 4(2): 1244-1251. |
| [10] | 贺占蜀, 陈雷, 李超, 等. 单丸粒和双丸粒喷丸模型的有限元模拟[J]. 塑性工程学报, 2020, 27(4): 153-158. |
| HE Zhanshu, CHEN Lei, LI Chao, et al. Finite Element Simulation of Single and Double Shot Peening Model[J]. Journal of Plasticity Engineering, 2020, 27(4): 153-158. | |
| [11] | FRIJA M, HASSINE T, FATHALLAH R, et al. Finite Element Modelling of Shot Peening Process: Prediction of the Compressive Residual Stresses, the Plastic Deformations and the Surface Integrity[J]. Materials Science and Engineering: A, 2006, 426(1/2): 173-180. |
| [12] | WANG Cheng, WANG Long, WANG Xiaogui, et al. Numerical Study of Grain Refinement Induced by Severe Shot Peening[J]. International Journal of Mechanical Sciences, 2018, 146/147: 280-294. |
| [13] | HASSANI-GANGARAJ S M, CHO K S, VOIGT H L, et al. Experimental Assessment and Simulation of Surface Nanocrystallization by Severe Shot Peening[J]. Acta Materialia, 2015, 97: 105-115. |
| [14] | GANGARAJ S M H, GUAGLIANO M, FARRAHI G H. An Approach to Relate Shot Peening Finite Element Simulation to the Actual Coverage[J]. Surface and Coatings Technology, 2014, 243: 39-45. |
| [15] | LIN Qinjie, LIU Huaiju, ZHU Caichao, et al. Effects of Different Shot Peening Parameters on Residual Stress, Surface Roughness and Cell Size[J]. Surface and Coatings Technology, 2020, 398: 126054. |
| [16] | SHERAFATNIA K, FARRAHI G H, MAHMOUDI A H. Effect of Initial Surface Treatment on Shot Peening Residual Stress Field: Analytical Approach with Experimental Verification[J]. International Journal of Mechanical Sciences, 2018, 137: 171-181. |
| [17] | 张颖琳, 霍玉鑫, 杨永亮, 等. GH4169高温合金喷丸残余应力有限元分析[J]. 北华航天工业学院学报, 2024, 34(4): 15-18. |
| ZHANG Yinglin, HUO Yuxin, YANG Yongliang, et al. Finite Element Analysis of Residual Stress in Shot Peening of GH4169 Superalloy[J]. Journal of North China Institute of Aerospace Engineering, 2024, 34(4): 15-18. | |
| [18] | 陈飞, 王成雨, 李伟刚, 等. Abaqus二次开发在航空弓形结构件喷丸强化模拟中的应用[J]. 计算机辅助工程, 2020, 29(2): 55-60. |
| CHEN Fei, WANG Chengyu, LI Weigang, et al. Application of Abaqus Secondary Development in Shot Peening Strengthening of Aerospace Arc-shaped Frame[J]. Computer Aided Engineering, 2020, 29(2): 55-60. | |
| [19] | LIN Qinjie, LIU Huaiju, ZHU Caichao, et al. Investigation on the Effect of Shot Peening Coverage on the Surface Integrity[J]. Applied Surface Science, 2019, 489: 66-72. |
| [20] | 熊天伦, 鲁录义. FEM-DEM耦合模型在ABAQUS中的实现[C]∥中国力学大会-2017暨庆祝中国力学学会成立60周年大会. 北京,2017: 378-391. |
| XIONG Tianlun, LU Luyi. Implementation of the FEM-DEM Coupled Model in ABAQUS[C]∥The Chinese Conference on Mechanics 2017 and the 60th Anniversary Celebration of the Chinese Society of Mechanics. Beijing,2017: 378-391. | |
| [21] | BHUVARAGHAN B, SRINIVASAN S M, MAFFEO B, et al. Shot Peening Simulation Using Discrete and Finite Element Methods[J]. Advances in Engineering Software, 2010, 41(12): 1266-1276. |
| [22] | TU Fubin, DELBERGUE D, MIAO Hongyan, et al. A Sequential DEM-FEM Coupling Method for Shot Peening Simulation[J]. Surface and Coatings Technology, 2017, 319: 200-212. |
| [23] | MURUGARATNAM K, UTILI S, PETRINIC N. A Combined DEM–FEM Numerical Method for Shot Peening Parameter Optimisation[J]. Advances in Engineering Software, 2015, 79: 13-26. |
| [24] | HONG T, OOI J Y, SHAW B. A Numerical Simulation to Relate the Shot Peening Parameters to the Induced Residual Stresses[J]. Engineering Failure Analysis, 2008, 15(8): 1097-1110. |
| [25] | MARINI M, PIONA F, FONTANARI V, et al. A New Challenge in the DEM/FEM Simulation of the Shot Peening Process: The Residual Stress Field at a Sharp Edge[J]. International Journal of Mechanical Sciences, 2020, 169: 105327. |
| [26] | LIU Y G, LI M Q, LIU H J. Nanostructure and Surface Roughness in the Processed Surface Layer of Ti-6Al-4V via Shot Peening[J]. Materials Characterization, 2017, 123: 83-90. |
| [27] | KLOTZ T, DELBERGUE D, BOCHER P, et al. Surface Characteristics and Fatigue Behavior of Shot Peened Inconel 718[J]. International Journal of Fatigue, 2018, 110: 10-21. |
| [28] | WU Daoxia, YAO Changfeng, ZHANG Dinghua. Surface Characterization and Fatigue Evaluation in GH4169 Superalloy: Comparing Results after Finish Turning; Shot Peening and Surface Polishing Treatments[J]. International Journal of Fatigue, 2018, 113: 222-235. |
| [29] | WU L H, JIANG C H. Effect of Shot Peening on Residual Stress and Microstructure in the Deformed Layer of Inconel 625[J]. Materials Transactions, 2017, 58(2): 164-166. |
| [30] | PARK J S, YILDIZLI K, DEMIR E, et al. Non-destructive Characterization of Subsurface Residual Stress Fields and Correlation with Microstructural Conditions in a Shot-peened Inconel Component[J]. Experimental Mechanics, 2018, 58(9): 1389-1406. |
| [31] | 王欣, 王科昌, 罗学昆, 等. 粉末合金FGH95喷丸强化对高温缺口疲劳性能的影响[J]. 航空制造技术, 2018, 61(23): 38-45. |
| WANG Xin, WANG Kechang, LUO Xuekun, et al. Effect of Shot-Peening on High-temperature Notched Fatigue Property of FGH95 Powder Metallurgy Superalloy[J]. Aeronautical Manufacturing Technology, 2018, 61(23): 38-45. | |
| [32] | SALVATI E, LUNT A J G, HEASON C P, et al. An Analysis of Fatigue Failure Mechanisms in an Additively Manufactured and Shot Peened IN 718 Nickel Superalloy[J]. Materials & Design, 2020, 191: 108605. |
| [33] | WU Lihong, JIANG Chuanhai. Investigation on Surface Layers Characteristics of Pre-stressed Shot Peening Inconel 625[J]. Materials Transactions, 2019, 60(12): 2558-2561. |
| [34] | BUGAYEV A A, GUPTA M C, ORR J, et al. Laser Shot Peening of Inconel 600 and Surface Morphology Characterization[J]. MRS Online Proceedings Library, 2004, 850(1): 78-82. |
| [35] | RAMKUMAR K D, KUMAR P S G, KRISHNA V R, et al. Influence of Laser Peening on the Tensile Strength and Impact Toughness of Dissimilar Welds of Inconel 625 and UNS S32205[J]. Materials Science and Engineering: A, 2016, 676: 88-99. |
| [36] | MORANÇAIS A, FÈVRE M, FRANÇOIS M, et al. Residual Stress Determination in a Shot-peened Nickel-based Single-crystal Superalloy Using X-ray Diffraction[J]. Journal of Applied Crystallography, 2015, 48(6): 1761-1776. |
| [37] | CHEN Yanhua, JIANG Chuanhai. Effect of Shot Peening on Surface Characteristics of Ni-based Single-crystal Superalloy[J]. Materials Transactions, 2013, 54(10): 1894-1897. |
| [38] | 王琨, 罗学昆, 宋尽霞, 等. 喷丸对DD412单晶高温合金表面完整性和疲劳性能的影响[J]. 材料工程, 2024, 52(7): 152-161. |
| WANG Kun, LUO Xuekun, SONG Jinxia, et al. Effects of Shot Peening on Surface Integrity and Fatigue Properties of DD412 Single Crystal Superalloy[J]. Journal of Materials Engineering, 2024, 52(7): 152-161. | |
| [39] | GILL A S, TELANG A, YE Chang, et al. Localized Plastic Deformation and Hardening in Laser Shock Peened Inconel Alloy 718SPF[J]. Materials Characterization, 2018, 142: 15-26. |
| [40] | 冯帅, 赵秀娟, 陈春焕, 等. GH4169高能喷丸表面纳米化的研究[J]. 新技术新工艺, 2008(6): 88-90. |
| FENG Shuai, ZHAO Xiujuan, CHEN Chunhuan, et al. Research on Surface Nanocrystallization Induced by High Energy Shot Peening GH4169 Superalloy[J]. New Technology & New Process, 2008(6): 88-90. | |
| [41] | KUMAR N N, YADAV A C, RAJA K, et al. Study on Effect of Laser Peening on Inconel 718 Produced by DMLS Technique[J]. SAE Technical Paper 2019-28-0146, 2019. |
| [42] | CHAMANFAR A, MONAJATI H, ROSENBAUM A, et al. Microstructure and Mechanical Properties of Surface and Subsurface Layers in Broached and Shot-peened Inconel-718 Gas Turbine Disc Fir-trees[J]. Materials Characterization, 2017, 132: 53-68. |
| [43] | 朱立华, 肖磊, 郭建政, 等. 喷丸强度对FGH4113A高温合 金微观组织的影响及定量表征[J]. 稀有金属材料与工程, 2023, 52(7): 2415-2423. |
| ZHU Lihua, XIAO Lei, GUO Jianzheng, et al. Effect of Shot Peening Intensity on FGH4113A Superalloy Microstructure and Quantitative Characterization[J]. Rare Metal Materials and Engineering, 2023, 52(7): 2415-2423. | |
| [44] | SUN Yunqi, YAO Changfeng, TAN Liang, et al. Surface Integrity and Fatigue Failure Behavior of Nickel Based Alloy Blades: after Cutting, Vibration Finishing and Shot Peening[J]. Engineering Failure Analysis, 2025, 167: 109034. |
| [45] | 张宁, 勾睿杰, 姚俊, 等. 基于试件疲劳性能的Allvac 718P1us铣削喷丸加工参数优化[J]. 中国表面工程, 2025, 38(3): 350-360. |
| ZHANG Ning, GOU Ruijie, YAO Jun, et al. Optimization of Milling and Shot Peening Parameters for Allvac 718Plus Based on the Fatigue Performance of Specimens[J]. China Surface Engineering, 2025, 38(3): 350-360. | |
| [46] | 潘一帆, 刘道新, 刘博, 等. 喷丸与振动光饰复合处理对GH4169高温合金疲劳性能的影响[J]. 稀有金属材料与工程, 2022, 51(8): 2955-2962. |
| PAN Yifan, LIU Daoxin, LIU Bo, et al. Effect of Shot Peening Combined Vibration Finishing on Fatigue Behavior of GH4169 Superalloy[J]. Rare Metal Materials and Engineering, 2022, 51(8): 2955-2962. | |
| [47] | 许春玲, 王欣, 宋颖刚, 等. 喷丸强化对DD6单晶合金典型力学性能的影响[J]. 金属热处理, 2019, 44(): 634-639. |
| XU Chunling, WANG Xin, SONG Yinggang, et al. Effect of Shot Peening on Typical Mechanical Properties of DD6 Single Crystal Superalloy[J]. Heat Treatment of Metals, 2019, 44(S1): 634-639. | |
| [48] | 王欣, 杨清, 于鹏, 等. DZ125定向凝固合金的喷丸工艺[J]. 金属热处理, 2021, 46(1): 149-153. |
| WANG Xin, YANG Qing, YU Peng, et al. Shot Peening Process of Directionally Solidified DZ125 Alloy[J]. Heat Treatment of Metals, 2021, 46(1): 149-153. | |
| [49] | 王欣, 许春玲, 刘晨光, 等. 喷丸对单晶合金中温疲劳性能的强化机制[J]. 航空制造技术, 2020, 63(12): 46-52. |
| WANG Xin, XU Chunling, LIU Chenguang, et al. Strengthening Mechanism of Shot-Peening on Medium-temperature Fatigue Property of Single-crystal Superalloy[J]. Aeronautical Manufacturing Technology, 2020, 63(12): 46-52. | |
| [50] | 王欣, 胡云辉, 王晓峰, 等. 喷丸强化对FGH96粉末高温合金疲劳性能应力集中敏感性的影响[J]. 航空制造技术, 2017, 60(13): 48-53. |
| WANG Xin, HU Yunhui, WANG Xiaofeng, et al. Effect of Shot Peening on Fatigue Performance Stress-concentration Sensitivity of FGH96 Powder Metallurgy Superalloy[J]. Aeronautical Manufacturing Technology, 2017, 60(13): 48-53. | |
| [51] | 王欣, 胡云辉, 付书红, 等. 喷丸强度对TC17及GH4169合金表面完整性和高温疲劳性能的影响[J]. 金属热处理, 2018, 43(1): 67-71. |
| WANG Xin, HU Yunhui, FU Shuhong, et al. Effect of Shot Peening Intensity on Surface Integrity and High-temperature Fatigue Performance of TC17 and GH4169 Alloys[J]. Heat Treatment of Metals, 2018, 43(1): 67-71. | |
| [52] | 胡殿印, 王涛, 杜俊良, 等. GH2787压气机叶片激光-喷丸复合强化疲劳强度提升方法[J]. 航空动力学报, 2025, 40(6): 20240017. |
| HU Dianyin, WANG Tao, DU Junliang, et al. Coupled Laser-shot Peening for Fatigue Strength Enhancement Method on GH2787 Compressor Blade[J]. Journal of Aerospace Power, 2025, 40(6): 20240017. | |
| [53] | 罗学昆, 张文灿, 吴波, 等. 激光冲击/喷丸复合强化对K4169铸造合金的表面完整性和疲劳性能的影响[J]. 航空制造技术, 2022, 65(11): 57-62. |
| LUO Xuekun, ZHANG Wencan, WU Bo, et al. Effect of Combination of Laser Shock Peening and Shot Peening on Surface Integrity and Fatigue Property of K4169 Casting Alloy[J]. Aeronautical Manufacturing Technology, 2022, 65(11): 57-62. | |
| [54] | 罗学昆, 吴小燕, 王科昌, 等. 表面完整性对FGH95合金高温疲劳性能的影响[J]. 航空材料学报, 2020, 40(2): 53-60. |
| LUO Xuekun, WU Xiaoyan, WANG Kechang, et al. Effect of Surface Integrity Evolution on High-temperature Fatigue Property of FGH95 Alloy[J]. Journal of Aeronautical Materials, 2020, 40(2): 53-60. | |
| [55] | KLOTZ T, MIAO H Y, BIANCHETTI C, et al. Analytical Fatigue Life Prediction of Shot Peened Inconel 718[J]. International Journal of Fatigue, 2018, 113: 204-221. |
| [56] | CHEN Z, PENG R L, MOVERARE J, et al. Effect of Cooling and Shot Peening on Residual Stresses and Fatigue Performance of Milled Inconel 718[J].Residual Stresses, 2016 (2017): 13. |
| [57] | LIU Xinling, ZHAO Kai, LIU Chunjiang. Fatigue Behavior and Surface Sensitivity of Board-shaped Sample of Powder Metallurgy FGH 96[J]. Advanced Materials Research, 2014, 891/892: 1723-1728. |
| [58] | GHORASHI M S, FARRAHI G H, MOVAHHEDY M R. Effect of Severe Shot Peening on the Fatigue Life of the Laser-cladded Inconel 718 Specimens[J]. The International Journal of Advanced Manufacturing Technology, 2019, 104(5): 2619-2631. |
| [59] | ZHAO Xiaohui, ZHOU Hongyang, LIU Yu. Effect of Shot Peening on the Fatigue Properties of Nickel-based Superalloy GH4169 at High Temperature[J]. Results in Physics, 2018, 11: 452-460. |
| [60] | 吴培松, 张继祥, 周伯谋, 等. 喷丸压力对GH3535合金表面状态及疲劳性能的影响[J]. 稀有金属材料与工程, 2022, 51(12): 4610-4617. |
| WU Peisong, ZHANG Jixiang, ZHOU Bomou, et al. Effect of Shot Peening Pressure on the Surface State and Fatigue Properties of GH3535 Alloy[J]. Rare Metal Materials and Engineering, 2022, 51(12): 4610-4617. | |
| [61] | 赵辛雨, 田凯, 罗学昆, 等. 喷丸表面完整性对K4169合金高温疲劳性能的影响[J]. 航空材料学报, 2023, 43(3): 42-48. |
| ZHAO Xinyu, TIAN Kai, LUO Xuekun, et al. Effect of Surface Integrity Induced by Shot Peening on High-temperature Fatigue Property of K4169 Alloy[J]. Journal of Aeronautical Materials, 2023, 43(3): 42-48. | |
| [62] | 方修洋, 宫健恩, 曹晓英, 等. 喷丸与CuNiIn涂层复合处理对高温合金榫试样微动疲劳性能的影响[J]. 中国表面工程, 2023, 36(4): 89-97. |
| FANG Xiuyang, GONG Jian'en, CAO Xiaoying, et al. Effect of Shot Peening and CuNiIn Coating Composite Treatment on Fretting Fatigue Properties of Superalloy Tenon Specimens[J]. China Surface Engineering, 2023, 36(4): 89-97. | |
| [63] | KHADHRAOUI M, CAO W, CASTEX L, et al. Experimental Investigations and Modelling of Relaxation Behaviour of Shot Peening Residual Stresses at High Temperature for Nickel Base Superalloys[J]. Materials Science and Technology, 1997, 13(4): 360-367. |
| [64] | HOFFMEISTER J, SCHULZE V, HESSERT R, et al. Residual Stresses under Quasi-static and Cyclic Loading in Shot Peened Inconel 718[J]. International Journal of Materials Research, 2012, 103(1): 66-72. |
| [65] | WU Lihong, JIANG Chuanhai. Effect of Thermal Relaxation on Residual Stress and Microstructure in the Near-surface Layers of Dual Shot Peened Inconel 625[J]. Advances in Mechanical Engineering, 2018, 10(10): 1687814018800530. |
| [66] | TELANG A, GILL A S, MANNAVA S R, et al. Effect of Temperature on Microstructure and Residual Stresses Induced by Surface Treatments in Inconel 718 SPF[J]. Surface and Coatings Technology, 2018, 344: 93-101. |
| [67] | MEGUID S A, MARICIC L A. Finite Element Modeling of Shot Peening Residual Stress Relaxation in Turbine Disk Assemblies[J]. Journal of Engineering Materials and Technology, 2015, 137(3): 031003. |
| [68] | SEDDIK R, SEDDIK M, ATIG A, et al. Thermo-mechanical Relaxation of Compressive Residual Stresses Induced by Shot Peening[J]. Procedia Structural Integrity, 2016, 2: 2182-2189. |
| [69] | FOSS B J, GRAY S, HARDY M C, et al. Analysis of Shot-peening and Residual Stress Relaxation in the Nickel-based Superalloy RR1000[J]. Acta Materialia, 2013, 61(7): 2548-2559. |
| [70] | BUCHANAN D J, JOHN R, BROCKMAN R A. Relaxation of Shot-Peened Residual Stresses under Creep Loading[J]. Journal of Engineering Materials and Technology, 2009, 131(3): 031008. |
| [71] | JOHN R, BUCHANAN D J, CATON M J, et al. Stability of Shot Peen Residual Stresses in IN100 Subjected to Creep and Fatigue Loading[J]. Procedia Engineering, 2010, 2(1): 1887-1893. |
| [1] | 余昶锐, 刘良宝, 周靖刚, 张函, 黄东, 张宁, 李勋. 面向涡轮盘榫槽凹圆弧表面的滚压参数优化[J]. 中国机械工程, 2026, 37(1): 60-65. |
| [2] | 孙富建, 朱千放, 梁志强, 鲁艳军, 陈金龙, 肖玉斌, 黄浩, 袁剑平. 电脉冲辅助硬车淬硬轴承钢表面摩擦学性能研究[J]. 中国机械工程, 2025, 36(11): 2537-2543. |
| [3] | 刘宏伟, 康仁科, 朱祥龙, 慕昊天, 何方舟, 陈莫. 滚压加工AISI 4340钢螺纹根部疲劳性能的提高[J]. 中国机械工程, 2025, 36(10): 2241-2248. |
| [4] | 周金宇, 陈逸飞. 基于多尺度模拟的选区激光熔化金属件疲劳性能预测[J]. 中国机械工程, 2025, 36(09): 2087-2096. |
| [5] | 姜世杰1, 2, 蔡尚港1, 英洪玮1, 陈佳琦1. 17-4PH不锈钢挤出成形制品的疲劳性能[J]. 中国机械工程, 2025, 36(07): 1582-1591. |
| [6] | 范滔1, 2, 姚倡锋1, 2, 谭靓1, 2, 单晨伟1, 2, 夏子文1, 2. γ-TiAl合金的加工特性及能场辅助技术研究进展[J]. 中国机械工程, 2025, 36(04): 636-645. |
| [7] | 何喆1, 李佳乐1, 史恺宁1, 樊昱昌3, 黄新春2. 热机载荷下GH4169G车削喷丸加工表面完整性的演化机理[J]. 中国机械工程, 2025, 36(04): 780-789. |
| [8] | 雷付煜1, 徐小旭2, 赵亚明2, 罗军1, 马超1, 徐从昌1, 李落星13. 加载角度对6082铝合金自冲铆接接头疲劳性能及失效模式的影响[J]. 中国机械工程, 2025, 36(01): 141-151. |
| [9] | 靳淇超1, 2, 包虎子1, 李良万3, 汪文虎3, 张锦淇1, 叶子银1, 郭磊1. DD5缓进磨削表面粗糙度和硬化率对疲劳性能影响研究[J]. 中国机械工程, 2024, 35(08): 1472-1479. |
| [10] | 张金阳, 许伟春, 王笑含, 江小辉, 高山. 铣削工艺优化对镍基高温合金加工残余应力分布影响研究[J]. 中国机械工程, 2024, 35(04): 624-635. |
| [11] | 王栋, 陈磊, 张志鹏. 外圆磨削18CrNiMo7-6力模型及表面完整性研究[J]. 中国机械工程, 2024, 35(03): 381-393. |
| [12] | 崔海涛, 钱春华. 镍基高温合金的热机械疲劳寿命预测模型研究[J]. 中国机械工程, 2024, 35(01): 67-73,82. |
| [13] | 勾睿杰, 张晓峰, 张鸿滨, 姚俊, 李勋. 刀具磨损对Allvac 718Plus高温合金铣削加工表面完整性及疲劳性能的影响[J]. 中国机械工程, 2023, 34(24): 2920-2926. |
| [14] | 吴泽刚, 侯永峰, 苗清, 李靖, 张定华, 罗明, . TC11钛合金整体叶轮铣削加工表面完整性研究[J]. 中国机械工程, 2023, 34(23): 2862-2872. |
| [15] | 胡博, 罗炜韬, 王少飞, 蓝希旺. 基于支持向量机参数优化的高温合金表面缺陷磁异常定量研究[J]. 中国机械工程, 2023, 34(17): 2058-2064. |
| 阅读次数 | ||||||
|
全文 |
|
|||||
|
摘要 |
|
|||||