Journal of Mechanical Engineering ›› 2022, Vol. 58 ›› Issue (20): 250-259.doi: 10.3901/JME.2022.20.250
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ZHANG Xiaosong1,2, CHEN Shuaifeng1, LI Wang3, SONG Hongwu1, ZHANG Shihong1, WEI Zuoshan4,5
Received:2021-12-02
Revised:2022-06-01
Online:2022-10-20
Published:2022-12-27
CLC Number:
ZHANG Xiaosong, CHEN Shuaifeng, LI Wang, SONG Hongwu, ZHANG Shihong, WEI Zuoshan. Study on Improving the Formability of 2B06 Aluminum Alloy Sheet by Local Hardening Effect Using Laser Heat Treatment[J]. Journal of Mechanical Engineering, 2022, 58(20): 250-259.
| [1] 潘复生,张丁非. 铝合金及应用[M]. 北京:化学工业出版社,2006. PAN Fusheng,ZHANG Dingfei. Aluminum alloy and its application[M]. Beijing:Chemical Industry Press,2006. [2] RAMBABU P,PRASAD N E,KUTUMBARAO V V,et al. Aluminium alloys for aerospace applications[M]// Aerospace Materials and Material Technologies. Singapore:Springer,2017. [3] LANG L H,LI T,AN D Y,et al. Investigation into hydromechanical deep drawing of aluminum alloy - Complicated components in aircraft manufacturing[J]. Materials Science and Engineering A,2009,499(1-2):320-324. [4] WANG L,STRANGWOOD M,BALINT D,et al. Formability and failure mechanisms of AA2024 under hot forming conditions[J]. Materials Science and Engineering:A,2011,528(6):2648-2656. [5] BOLT P J,LAMBOO N A P M,ROZIER P J C M. Feasibility of warm drawing of aluminium products[J]. Journal of Materials Processing Technology,2001,115(1):118-121. [6] MERKLEIN M,JOHANNES M,LECHNER M,et al. A review on tailored blanks - Production,applications and evaluation[J]. Journal of Materials Processing Technology,2014,214(2):151-164. [7] MERKLEIN M,NGUYEN H. Adjusting optimized material properties for tailored heat treated blanks[J]. Key Engineering Materials,2011,473(1):420-427. [8] GEIGER M,MERKLEIN M,STAUD D,et al. An inverse approach to the numerical design of the process sequence of tailored heat treated blanks[J]. Production Engineering,2008,2(1):15-20. [9] HOFMANN A. Deep drawing of process optimized blanks[J]. Journal of Materials Processing Technology,2001,119(1-3):127-132. [10] GEIGER M,MERKLEIN M,KERAUSCH M. Finite element simulation of deep drawing of tailored heat treated blanks[J]. CIRP Annals-Manufacturing Technology,2004,53(1):223-226. [11] MERKLEIN M,BOHM W,LECHNER M,et al. Tailoring material properties of aluminum by local laser heat treatment[J]. Physics Procedia,2012,39(1):557-569. [12] NGUYEN H,MERKLEIN M. Improved formability of aluminum alloys using laser induced hardening of tailored heat treated blanks[J]. Physics Procedia,2012,39(1):318-326. [13] LECHNER M,KUPPERT A,HAGENAH H,et al. Optimization of the heat treatment layout and blank outline of THTB[J]. Key Engineering Materials,2013,554/557(2):2465-2471. [14] KAHRIMANIDIS A,WORTBERG D,MERKLEIN M. Influence of a short term heat treatment by conduction and induction on the mechanical properties of AA6014 alloys[J]. Physics Procedia,2014,56(1):1410-1418. [15] 王匀,张凯,董培龙,等. 激光辅助加热下的微塑性成形的研究[J]. 激光技术,2009,33(2):147-150. WANG Yun,ZHANG Kai,DONG Peilong,et al. Investigation into microforming based on laser-assisted heating[J]. Laser Technology,2009,33(2):147-150. [16] 王志坚,高昱霖,宋鸿武,等. 局部热处理差性板提高2B06铝合金口框零件成形性的模拟研究[J]. 锻压技术,2020,45(2):61-66. WANG Zhijian,GAO Yulin,SONG Hongwu,et al. Simulation study on improving formability of frame parts for 2B06 aluminum alloy by local heat treatment tailored heat treated blanks[J]. Forging & Stamping Technology,2020,45(2):61-66. [17] 王志坚,高昱霖,宋鸿武,等. 短时局部热处理提高2B06铝合金口框零件成形性的模拟研究[J]. 锻压技术,2019,44(9):133-140. WANG Zhijian,GAO Yulin,SONG Hongwu,et al. Simulation study on formability improvement of 2B06 aluminum alloy frame through short time local heat treatment[J]. Forging & Stamping Technology,2019,44(9):133-140. [18] 王志坚,郭芳玉,宋鸿武,等. 局部热处理对7B04铝合金口框零件成形性影响的模拟研究[J]. 锻压技术,2021,46(10):187-195. WANG Zhijian,GUO Fangyu,SONG Hongwu,et al. Simulation and study on influence of local heat treatment on formability for 7B04 aluminum alloy frame parts[J]. Forging & Stamping Technology,2021,46(10):187-195. [19] 高昱霖. 激光局部热处理改善2B06铝合金板成形性研究[D]. 沈阳:沈阳航空航天大学,2020. GAO Yulin. Research on improving the formability of 2B06 aluminum alloy sheets by laser local treatment[D]. Shenyang:Shenyang Aerospace University,2020. [20] MAZUMDER J,STEEN W. Heat transfer model for cw laser material processing[J]. Journal of Applied Physics,1980,51(1):941-947. [21] 曾祥呈,黄建文,张庆茂. 激光焊接过程温度场的模拟[J]. 应用激光,2008,28(3):190-195. ZENG Xiangcheng,HUANG Jianwen,ZHANG Qingmao. Thermal field simulation in laser welding process[J]. Applied Laser,2008,28(3):190-195. [22] 杨世铭,陶文铨. 传热学[M]. 北京:高等教育出版社,2006. YANG Shiming,TAO Wenquan. Heat transfer theory[M]. Beijing:High Education Press,2006. [23] 《中国航空材料手册》编辑委员会.中国航空材料手册第2卷[M]. 北京:中国标准出版社,2001. Editorial Committee of China Aeronautical Materials Handbook. China aeronautical materials handbook,Vol. 2[M]. Beijing:China Standards Press,2001. [24] SONTI N,AMATEAU M F. Finite-element modeling of heat flow in deep-penetration laser welds in aluminum alloys[J]. Numerical Heat Transfer,1989,16(3):351-370. [25] 吴思根,周昕宇,蒋志伟,等. 低频振荡扫描激光焊接铝合金薄板温度场数值模拟[J]. 应用激光,2019,39(3):440-447. WU Sigen,ZHOU Xinyu,JIANG Zhiwei,et al. Numerical simulation on the temperature field for low-frequency laser oscillation welding of alumimun alloy[J]. Applied Laser,2019,39(3):440-447. |
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