[1] 邓运来,张新明. 铝及铝合金材料进展[J]. 中国有色金属学报,2019,29(9):2115-2141. [2] 宋肖滨,姜英杰. 7B05铝合金铸锭的均匀化处理工艺研究[J]. 中国金属通报,2018 (8):71-73. [3] 刘静安,闫维刚,谢水生.铝合金型材的生产技术[M].北京:冶金工业出版社,2012. [4] WU H,WEN S P,HUANG H,et al. Effects of homogenization on precipitation of Al3(Er,Zr) particles and recrystallization behavior in a new type Al-Zn-Mg-Er-Zr alloy[J]. Materials Science & Engineering A,2017,689:313-322. [5] CLINCH M R,HARRIS S J,HEPPLES W,et al. Influence of zinc to magnesium ratio and total solute content on the strength and toughness of 7xxx series alloys[J]. Materials Science Forum,2006(519/520/521):339-344. [6] 王建军,张臻,邓运来. 分级时效对7B05铝合金型材组织性能的影响[J]. 轻合金加工技术,2024(1):36-44. [7] 肖军. 浅析汽车铝合金铸造的工艺性能[J]. 铝加工,2013(2):48-57. [8] 刘存平,郭晟,罗宗平,等.6061铝合金板冲压成形数值模拟研究[J].锻造与冲压,2023 (10):46-48. [9] 张乔. 纯钛带激光冲击成形实验及数值模拟[D]. 镇江:江苏大学,2017. [10] YE C,CHENG G J.Effects of temperature on laser shock induced plastic deformation:the case of copper[J]. Journal of Manufacturing Science and Engineering,2010,132:061009. [11] 李健,范帆,赵肖肖,等.激光功率和扫描线间距对扫描激光冲击成形的影响[J].光学与光电技术,2024 (1):29-34,45. [12] IM J B,GRANDHI R V,RO Y. Residual stress behaviors induced by laser peening along the edge of curved models[J]. Journal of Mechanical Science and Technology,2012(26):3943-3952. [13] SALA S T,KELLER S,CHUPAKHIN S,et al. Effect of laser peen forming process parameters on bending and surface quality of Ti-6Al-4V sheets[J]. Journal of Materials Processing Technology,2022,305:117578. [14] 曹子文,邹世坤,车志刚.激光诱导冲击波加载下铝合金弯曲变形规律与表面特性研究[J].激光与光电子学进展,2015,52(12):130-134. [15] 窦世涛,张津,郑林,等.激光冲击能量对3D打印铝合金表面残余应力和形貌的影响[J].精密成形工程,2023(6):55-61. [16] MAN J,YANG H,LIU H,et al. Micro Pattern Transfer onto Metallic Foil Using Micro-Energy Ultraviolet Pulse Laser Shock[J]. Optics and Laser Technology,2018,107:228-238. [17] MAN J,YANG H,WANG Y,et al. Investigation of the Controllable Surface Morphology of Micro-Patterns Fabricated on Metallic Foil via Laser Shock Imprinting[J]. Optics and Laser Technology,2019,119:105669. [18] 王长雨,罗开玉,鲁金忠. 双面激光喷丸条件下冲击前进方向对AM50镁合金试样残余应力场的影响[J]. 中国激光,2016,43(3):43-49. [19] 段成红,李佳毅,裴亚田,等.不同路径及曲率激光冲击TC17残余应力分布研究[J]. 激光杂志,2018,39(11):55-61. [20] 吴俊峰. 基于激光冲击强化技术的叶片强化和壁板成形研究[D]. 南京:东南大学,2019:73-78. [21] YANG Y Q,QIAO H C,LU Y,et al. The saturated convex bending curvature of 7075 aluminum panel bent by orthogonal laser shock forming[J]. Optics and Laser Technology,2022,156:108586. [22] 李应红.激光冲击强化理论与技术[M]. 北京:科学出版社,2013:132-133. [23] JOHNSON J,ROHDE R. Dynamic deformation twinning in shock-loaded iron[J]. Appl. Phys,1971,42:4171-4182. [24] OCANA J L,MORALES M,GAREIA-BALLESTEROS J J,et al. Laser shock microforming of thin metal sheets[J]. Applied Surface Science,2009,255:5633-5636. |