[1]Le Maoût N, Thuillier S, Manach P Y. Aluminum alloy damage evolution for different strain paths—Application to hemming process[J]. Engineering Fracture Mechanics, 2009, 76(9): 1202-1214. [2]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. Deng Yunlai, Zhang Xinming. Progress of aluminum and aluminum alloy materials[J]. The Chinese Journal of Nonferrous Metals, 2019, 29(9): 2115-2141. [3]Mrówka-Nowotnik G, Sieniawski J. Influence of heat treatment on the microstructure and mechanical properties of 6005 and 6082 aluminium alloys[J]. Journal of Materials Processing Technology, 2005, 162: 367-372. [4]钟建华, 饶 克, 付群强, 等. 提高6063铝合金强度途径的探讨[J]. 中国有色金属学报, 2001, 11(S2): 107-109. Zhong Jianhua, Rao Ke, Fu Qunqiang, et al. Discussion of improving 6063 aluminum alloy intension[J]. The Chinese Journal of Nonferrous Metals, 2001, 11(S2): 107-109. [5]商宝川, 尹志民, 周 向, 等. 固溶-时效对6082合金挤压棒材组织性能的影响[J]. 材料热处理学报, 2011, 32(1): 77-81. Shang Baochuan, Yin Zhimin, Zhou Xiang, et al. Effect of solution and aging treatment on microstructure and properties of hot extruded 6082 aluminum alloy bars[J]. Transactions of Materials and Heat Treatment, 2011, 32(1): 77-81. [6]Porter D A, Easterling K E. Phase Transformations in Metals and Alloys[M]. Van Nostrand Reinhold: Springer US, 1992. [7]张海锋, 郑子樵, 钟 申, 等. 双级时效制度对6156铝合金组织和性能的影响[J]. 中国有色金属学报, 2012, 22(4): 1025-1032. Zhang Haifeng, Zheng Ziqiao, Zhong Shen, et al. Effects of two-step aging treatment on microstructure and properties of 6156 aluminum alloy[J]. The Chinese Journal of Nonferrous Metals, 2012, 22(4): 1025-1032. [8]王春云. 6061铝合金板材快速固溶-时效工艺及机理研究[D]. 哈尔滨: 哈尔滨工业大学, 2021. Wang Chunyun. Study on rapid solution and aging treatment process and mechanism of 6061 aluminum alloy sheets[D]. Harbin: Harbin Institute of Technology, 2021. [9]刘全升, 范梦婷, 罗欣然. 固溶和时效处理对加压成形6063铝合金组织与性能的影响[J]. 机械工程材料, 2021, 45(1): 66-72. Liu Quansheng, Fan Mengting, Luo Xinran. Effect of solution and aging treatment on microstructure and properties of pressure formed 6063 aluminum alloy[J]. Materials for Mechanical Engineering, 2021, 45(1): 66-72. [10]赵爱彬. 热处理对6063铝合金组织与性能的影响[J]. 热加工工艺, 2010, 39(4): 139-144. Zhao Aibin. Effect of heat treatment on microstructure and properties of 6063 aluminum alloy[J]. Hot Working Technology, 2010, 39(4): 139-144. [11]陈宜钊. 不同处理态6063铝合金的性能与微观组织研究[D]. 长沙: 中南大学, 2013. Chen Yizhao. Effect of different processes on properties and microstructures of 6063 aluminum alloy[D]. Changsha: Central South University, 2013. [12]姜 锋, 陈宜钊, 徐慧惠, 等. 6063铝合金挤压材采用风淬的时效性能与组织研究[J]. 轻合金加工技术, 2013, 41(2): 38-40. Jiang Feng, Chen Yizhao, Xu Huihui, et al. Effect of air-quenching on aging performance and structure of 6063 aluminum alloy profile[J]. Light Alloy Fabrication Technology, 2013, 41(2): 38-40. [13]李 科, 甘卫平, 陈铁平, 等. 热处理工艺对6063铝合金组织和力学性能的影响[J]. 铝加工, 2005(2): 1-4. Li Ke, Gan Weiping, Chen Tieping, et al. Effect of heat treatment on microstructure and mechanical property of 6063 aluminum alloy[J]. Aluminum Fabrication, 2005(2): 1-4. [14]王孟君, 王金亮. 6063铝合金时效工艺的研究[J]. 金属热处理, 1998, 23(8): 24-25. Wang Mengjun, Wang Jinliang. Study on aging treatment of 6063 Al alloy[J]. Heat Treatment of Metals, 1998, 23(8): 24-25. [15]Chang L, Xiong H Q, Bhatta L, et al. Microstructure evolution and mechanical properties of Al-3.6Cu-1Li alloy via cryorolling and aging[J]. Transactions of Nonferrous Metals Society of China, 2020, 30(11): 2904-2914. [16]Gao R Q, Stiller K, Hansen V, et al. Influence ofaging conditions on the microstructure and tensile strength of aluminium alloy 6063[J]. Materials Science Forum, 2002, 396-402: 1211-1216. [17]Siddiqui R A, Abdullah H A, Al-Belushi K R. Influence of aging parameters on the mechanical properties of 6063 aluminium alloy[J]. Journal of Materials Processing Technology, 2000, 102(1-3): 234-240. [18]Chen B, Wu Y J, Zhu T, et al. The effects of solid-solution on properties and microstructure of 6063 aluminum alloy[J]. Advanced Materials Research, 2014, 881-883: 1346-1350. [19]周 向. 6063及7003铝合金组织性能与淬火敏感性研究[D]. 长沙: 中南大学, 2012. [20]李彩文. 6×××铝合金在线淬火换热系数及数值模拟研究[D]. 长沙: 中南大学, 2011. |