帮助 关于我们

返回检索结果

激光冲击强化技术的研究进展
Research process of laser peening technology

查看参考文献84篇

乔红超 1 *   高宇 2   赵吉宾 1   陆莹 1   赵亦翔 3  
文摘 综合介绍激光冲击强化技术在高周疲劳、腐蚀防护、生物医疗和精密成形领域的代表性应用,深入讨论激光冲击强化在相应领域的优势与有待解决的问题,并针对应用发展趋势进行分析。在高周疲劳延寿、腐蚀防护领域,激光冲击强化技术已实现批量化生产;在生物医疗领域,激光冲击强化技术的研究成果已接近生产应用,激光冲击强化在大型壁板精密成形方面已有小批量生产订单,在微系统领域也已获得较好的研究成果,趋于实用化,应用前景非常乐观。同时,针对不同应用领域的发展阶段与具体需求,也为激光冲击强化设备开发指明了多样化的发展方向。
其他语种文摘 The applications of laser peening in many fields, such as high-cycle fatigue, corrosion protection, biomedical and precision forming, were summarized, and the advantages and pending problems of laser peening in the corresponding applications were discussed, and the application development trends were analyzed. In the high-cycle fatigue and corrosion protection field, the laser peening technology has been used in mass industrial production. In biomedical field, the laser peening technique has been developed toward industrial application. Laser peening for large panels forming has got small batch orders, and in the field of micro-electro-mechanical system, the application research of laser peening has also obtained good results which tends to practical application, so the application prospects are very optimistic. Meanwhile, the diversified development direction of laser peening equipment was indicated for the specific needs of different applications and development stages.
来源 中国有色金属学报 ,2015,25(7):1744-1755 【核心库】
关键词 激光冲击强化 ; 高周疲劳 ; 腐蚀防护 ; 生物医疗 ; 精密成形
地址

1. 中国科学院沈阳自动化研究所, 沈阳, 110179  

2. 中航工业沈阳黎明航空发动机(集团)有限责任公司, 沈阳, 110043  

3. 中国科学院金属研究所, 沈阳, 110016

语种 中文
文献类型 综述型
ISSN 1004-0609
学科 电子技术、通信技术
基金 国家863计划
文献收藏号 CSCD:5504593

参考文献 共 84 共5页

1.  Gao Y. Experimental validation of the dynamic models of a high performance workpiece table under preloaded Hertzian contact. Journal of Materials Processing Technology,2002,129(1):485-489 被引 3    
2.  Mello J D B. Influence of surface texturing and hard chromium coating on the wear of steels used in cold rolling mill rolls. Wear,2013,302(1):1295-1309 被引 14    
3.  Liu Y G. Characterization of surface laser in TC17 alloy treated by air blast shot peening. Materials and Design,2015,65:120-126 被引 14    
4.  Trdan U. Laser shock peening effect on the dislocation transitions and grain refinement of Al-Mg-Si alloy. Materials Characterization,2014,97:57-68 被引 15    
5.  乔红超. 激光冲击强化对TiAl合金组织和性能的影响. 光学精密工程,2014,22(7):1766-1773 被引 24    
6.  Altenberger I. On the effect of deep-rolling and laser-peening on the stress-controlled low-and high-cycle fatigue behavior of Ti-64Al-4V at elevated temperatures up to 550 ℃. International Journal of Fatigue,2012,44:292-302 被引 32    
7.  乔红超. 纳秒脉宽Nd:YAG激光冲击强化激光器的研制及分析. 中国激光,2013,40(8):0802001(1-7) 被引 1    
8.  张于贤. 关于材料屈服强度的实验研究. 材料工程,2005(11):43-45 被引 4    
9.  Kang J H. Impact of short-range ordering on yield strength of high manganese austenitic steels. Materials Science and Engineering A,2014,614(22):122-128 被引 5    
10.  姚卫星. 结构疲劳寿命分析,2003:1-5 被引 9    
11.  Huang S. Effects of laser peening with different coverage areas on fatigue crack growth properties of 6061-T6 aluminum alloy. International Journal of Fatigue,2013,47(2):292-299 被引 14    
12.  Dungcy C. The effect of combined cycle fatigue upon the fatigue performance of Ti-6Al-4V fan blade material. Journal of Material Processing Technology,2004,153:374-379 被引 1    
13.  Shlyannikov V N. Fatigue of stream turbine blades with damage on the leading edge. Procedia Materials Science,2014,3:1792-1797 被引 2    
14.  Hou J. Prediction of fatigue crack propagation lives of turbine discs with forging-induced initial cracks. Engineering Fracture Mechanics,2014,131:406-418 被引 2    
15.  Hennig W. Shot peening method for aerofoil treatment of blisk assemblies. Procedia Cirp,2014,13:355-358 被引 3    
16.  Achintha M. Fatigue behavior of geometric features subjected to laser shock peening: Experiments and modelling. International Journal of Fatigue,2014,62:171-179 被引 18    
17.  邹世坤. 发动机整体叶盘的激光冲击强化技术. 中国激光,2011,38(6):0601009(1-7) 被引 1    
18.  Grinspn A S. Effect of oil jet peening duration on surface modification and fatigue behavior of medium carbon steel AISI 1040. Materials Science and Engineering A,2007,456(1):210-217 被引 1    
19.  Montross C S. Laser-induced shock wave generation and shock wave enhancement in basalt. International Journal of Rock Mechanics and Mining Sciences,1999,36(6):849-855 被引 3    
20.  Binner J. Advanced Materials 1991-1992,1991:1-25 被引 1    
引证文献 14

1 陈松林 高应变率下材料本构模型参数的获得方法 中国有色金属学报,2015,25(12):3381-3388
被引 1

2 孙汝剑 激光冲击强化对电弧增材2319铝合金微观组织及残余应力的影响 激光与光电子学进展,2018,55(1):011413-1-011413-7
被引 3

显示所有14篇文献

论文科学数据集
PlumX Metrics
相关文献

 作者相关
 关键词相关
 参考文献相关

版权所有 ©2008 中国科学院文献情报中心 制作维护:中国科学院文献情报中心
地址:北京中关村北四环西路33号 邮政编码:100190 联系电话:(010)82627496 E-mail:cscd@mail.las.ac.cn 京ICP备05002861号-4 | 京公网安备11010802043238号