激光技术, 2018, 42 (1): 94, 网络出版: 2018-02-01   

铜箔激光冲击微成形微观组织与残余应力研究

Research of microstructure and residual stress of copper foils processed by laser shock forming
作者单位
1 江苏大学 机械工程学院, 镇江212013
2 江苏大学 激光技术研究所, 镇江212013
引用该论文

左慧, 张凯, 曹旭, 叶云霞. 铜箔激光冲击微成形微观组织与残余应力研究[J]. 激光技术, 2018, 42(1): 94.

ZUO Hui, ZHANG Kai, CAO Xu, YE Yunxia. Research of microstructure and residual stress of copper foils processed by laser shock forming[J]. Laser Technology, 2018, 42(1): 94.

参考文献

[1] FAN J R, HUANG Sh, ZHOU J Zh, et al. Analysis and expectation of microscale laser shock forming[J]. Laser & Optoelectronics Progress, 2012, 49(1): 10003(in Chinese).

[2] HUANG Zh H, XING Y, TONG Zh C. State of the development in micro-forming technology[J]. China Metalforming Equipment & Manufacturing Technology, 2007, 42(3): 19-24(in Chinese).

[3] ZHENG Ch, SUN Sh, JI Zh, et al. Microscale laser peen forming of sheet metal and its research situation[J]. Journal of Plasticity Engineering, 2009, 16(4): 59-67.

[4] ENGEL U, ECKSTEIN R. Microforming—from basic research to its realization[J]. Journal of Materials Processing Technology, 2002,125(2): 35-44.

[5] SARWAR M S U, DAHMARDEH M, NOJEH A, et al. Batch-mode micropatterning of carbon nanotube forests using UV-LIGA assisted micro-electro-discharge machining[J]. Journal of Materials Processing Technology, 2014, 214(11): 2537-2544.

[6] NIEHOFF S H, VOLLERTSEN F. Non-thermal laser stretch-forming[J]. Advanced Materials Research, 2005, 6/8: 433-440.

[7] VOLLERTSEN F, SAKKIETTIBUTRA J. Different types to use laser as a forming tool[J]. Physics Procedia, 2010, 5: 193-203.

[8] NIEHOFF S H, HU Z Y, VOLLERTSEN F. Mechanical and laser micro deep drawing[M].Key Engineering Materials, 2007,344: 799-806.

[9] GAO H, YE C, CHENG G J. Deformation behaviors and critical parameters in microscale laser dynamic forming[J]. Journal of Manufacturing Science & Engineering, 2009, 131(5): 051011.

[10] CHENG G J, PIRZADA D, MING Z. Microstructure and mechanical property characterizations of metal foil after microscale laser dynamic forming[J]. Journal of Applied Physics, 2007, 101(6): 345-360.

[11] ZHANG X L, KOU H Ch, LI H W, et al. Study on the microstructure and mechanical properties of CP-Ti during cold deep drawing[J]. Journal of Plasticity Engineering, 2010, 17(3): 93-97(in Chinese).

[12] YUAN G D, SHI D Q, JIANG Y F, et al. Study on residual stress distrubution of laser shock forming metal-sheet[J]. Laser Technology, 2010, 34(3): 303-305(in Chinese).

[13] ZHEN Ch. Numberical simulation and experimental study on microscale laser peen forming[D]. Ji’nan: Shandong University,2011: 23-48(in Chinese).

[14] ZHANG J, HUA Y Q, CAO J D. Simulation of propagation characteristics of stress wave in copper films with laser shock processing[J]. Laser Technology, 2016, 40(4): 601-605(in Chinese).

[15] LIU Z A, SHI W, WANG Ch. Study on numerical simulation of residual stressesinduced by laser shock processing[J]. Laser Technology, 2017, 41(1): 1-5(in Chinese).

[16] LI K, YAO Z, HU Y, et al. Friction and wear performance of laser peen textured surface under starved lubrication[J]. Tribology International, 2014, 77: 97-105.

[17] JU H K, YUN J K, KIM J S. Effects of simulation parameters on residual stresses for laser shock peening finite element analysis[J]. Journal of Mechanical Science and Technology, 2013, 27(7): 2025-2034.

[18] YU T Y. Simulation and experimental study on residual stress field of 2024 aluminum alloy induced by flat-top laser beam[J]. Chinese Journal of Lasers, 2013,39(10): 1003001(in Chinese).

[19] PENG H B, ZHANG H J. Research development of the constitutive models of metal materials[J]. Meterials for Mechanical Engineering, 2012, 36(3): 5-10(in Chinese).

[20] FABBRO R, FOURNIER J, BALLARD P, et al. Physical study of laser-produced plasma in confined geometry[J]. Journal of Applied Physics, 1990, 68(2): 775-784.

[21] DEVAUX D, FABBRO R, TOLLIER L, et al. Generation of shock waves by laser-induced plasma in confined geometry[J]. Journal of Applied Physics, 1993, 74(4): 2268-2273.

[22] YE Y X, FENFY Y, LIAN Z C, et al. Plastic deformation mechanism of polycrystalline copper foil shocked with femtosecond laser[J]. Applied Surface Science, 2014, 309(4): 240-249.

[23] ZHEN C, SUN S, JI Z, et al. Numerical simulation and experimentation of micro scale laser bulge forming[J]. International Journal of Machine Tools & Manufacture, 2010, 50(12): 1048-1056.

[24] ZHOU M, ZHANG Y K, CAI L . Ultrahigh-strain-rate plastic deformation of a stainless-steel sheet with TiN coatings driven by laser shock waves[J]. Applied Physics, 2003, A77(3): 549-554.

左慧, 张凯, 曹旭, 叶云霞. 铜箔激光冲击微成形微观组织与残余应力研究[J]. 激光技术, 2018, 42(1): 94. ZUO Hui, ZHANG Kai, CAO Xu, YE Yunxia. Research of microstructure and residual stress of copper foils processed by laser shock forming[J]. Laser Technology, 2018, 42(1): 94.

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