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激光冲击成形技术研究现状 被引量:1

Current Status of Laser Shock Forming Technology Research
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摘要 激光冲击成形是利用激光诱导高幅冲击波的力效应使板材产生塑性变形的快速、高效、精确的成形新技术,具有加工柔性高、精确可控、无小曲率成形的回弹问题、成形后材料性能好和无污染等特点,是一种无模、柔性成形新工艺。它可以充分发挥激光高能量的优点,是激光在板材成形领域的新应用,具有广阔的应用前景和巨大的开发潜力。
出处 《航空制造技术》 北大核心 2013年第11期48-51,共4页 Aeronautical Manufacturing Technology
基金 天津职业技术师范大学科研发展基金资助项目(KJY11-02)资助
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  • 1张于贤,王红.关于材料屈服强度的实验研究[J].材料工程,2005,33(11):43-45. 被引量:14
  • 2GAO Y, TSE S, ZHANG D, XU X. Experimental validation of the dynamic models of a high performance workpiece table under preloaded Hertzian contact[J]. Journal of Materials Processing Technology, 2002, 129(1): 485-489.
  • 3MELLO J D B, GONCALVES J L, COSTA H L. Influence of surface texturing and hard chromium coating on the wear of steels used in cold rolling mill rolls[J]. Wear, 2013, 302(1): 1295-1309.
  • 4LIU Y G, LI H M, LI M Q. Characterization of surface laser in TC17 alloy treated by air blast shot peening[J]. Materials and Design, 2015, 65: 120-126.
  • 5TRDAN U, SKARBA M, GRUM J. Laser shock peening effect on the dislocation transitions and grain refinement of A1-Mg-Si alloy[J]. Materials Characterization, 2014, 97: 57-68.
  • 6ALTENBERGER I, NALLA R K, SANO Y, WAGNER L, RITCHIE R O. On the effect of deep-rolling and laser-peening on the stress-controlled low- and high-cycle fatigue behavior of Ti-64A1-4V at elevated temperatures up to 550 C[J]. International Journal of Fatigue, 2012, 44: 292-302.
  • 7KANG J H, 1NGENDAHL T, APPEN J V, DRONSKOWSKI R, BLECK W. Impact of short-range ordering on yield strength of high manganese austenitic steels[J]. Materials Science and Engineering A, 2014, 614(22): 122-128.
  • 8HUANG S, ZHOU J Z, SHENG J, LUO K Y, LU J Z, XU Z C, MENG X K, DAI L, ZUO L D, RUAN H Y, CHEN S Y. Effects of laser peening with different coverage areas on fatigue crack growth properties of 6061-T6 aluminum alloy[J]. International Journal of Fatigue, 2013, 47(2): 292-299.
  • 9DUNGCY C, BOWCN P. The effect of combined cycle fatigue upon the fatigue performance of Ti-6A1-4V fan blade material[J]. Journal of Material Processing Technology, 2004, 153:374-379.
  • 10SHLYANNIKOV V N, YARULLIN R R, ZAKHAROV A P. Fatigue of stream turbine blades with damage on the leading edge[J]. Procedia Materials Science, 2014, 3: 1792-1797.

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