[1]余 聪, 陈乐平, 周 全. 稀土元素对铝合金组织与性能影响的研究进展[J]. 特种铸造及有色合金, 2021, 41(2): 241-246. Yu Cong, Chen Leping, Zhou Quan. Research progress in effects of rare earth elements on microstructure and properties of aluminum alloy[J]. Special Casting and Nonferrous Alloys, 2021, 41(2): 241-246. [2]Bariani P F, Bruschi S, Ghiotti A, et al. Hot stamping of AA5083 aluminium alloy sheets[J]. CIRP Annals- Manufacturing Technology, 2013, 62(1): 251-254. [3]Zhou J, Wang B, Lin J, et al. Forming defects in aluminum alloy hot stamping of side-door impact beam[J]. Transactions of Nonferrous Metals Society of China, 2014, 24(11): 3611-3620. [4]Poole W J, Saeter J A, Skjervold S, et al. A model for predicting the effect of deformation after solution treatment on the subsequent artificial aging behavior of AA7030 and AA7108 alloys[J]. Metallurgical and Materials Transactions A, 2000, 31(9): 2327-2338. [5]胡志力, 程彬洋, 魏鹏飞, 等. 7075铝合金热成形析出相演化规律和强度预测模型[J]. 锻压技术, 2021, 46(9): 105-111. Hu Zhili, Cheng Binyang, Wei Pengfei, et al. Evolution laws of precipitated phases and strength prediction model for 7075 aluminum alloy during hot forming[J]. Forging and Stamping Technology, 2021, 46(9): 105-111. [6]林 楷, 尤彬波, 谢国文, 等. 高强铝合金热冲压工艺技术与数值模拟研究[J]. 汽车工艺与材料, 2020(9): 1-5. [7]闵峻英, 卢嘉昕, 魏一凡. 工艺参数对热冲压成形AA7075力学性能的影响[J]. 塑性工程学报, 2021, 28(6): 96-103. Min Junying, Lu Jiaxin, Wei Yifan. Effect of process parameters on mechanical properties of hot-stamped AA7075[J]. Journal of Plasticity Engineering, 2021, 28(6): 96-103. [8]陈 扬, 孙正启, 张晓欣, 等. 热处理工艺参数对7075铝合金T6态组织和性能的影响[J]. 塑性工程学报, 2021, 28(7): 145-149. Chen Yang, Sun Zhengqi, Zhang Xiaoxin, et al. Effect of heat treatment process parameters on microstructure and properties of 7075 aluminum alloy in T6 state[J]. Journal of Plasticity Engineering, 2021, 28(7): 145-149. [9]王义林, 刘 勇, 耿会程, 等. 高强铝合金热冲压成形技术研究进展[J]. 航空制造技术, 2019, 62(16): 22-35. Wang Yilin, Liu Yong, Geng Huicheng, et al. Research progresses of hot stamping technology for high strength aluminum alloy sheet[J]. Aeronautical Manufacturing Technology, 2019, 62(16): 22-35. [10]李 芳, 牛天昊, 王 雨, 等. 固溶处理时间对7050铝合金挤压材料力学性能及耐腐蚀性能的影响[J]. 材料热处理学报, 2021, 42(7): 39-48. Li Fang, Niu Tianhao, Wang Yu, et al. Effect of solution treatment time on mechanical properties and corrosion resistance of extruded 7050 aluminum alloy[J]. Transactions of Materials and Heat Treatment, 2021, 42(7): 39-48. [11]吴 楠, 富公诚, 杨 旭, 等. 热处理对汽车用铝合金性能的影响[J]. 铝加工, 2020(2): 36-39. Wu Nan, Fu Gongcheng, Yang Xu, et al. Effect of heat treatment on properties of automotive aluminum alloy[J]. Aluminium Fabrication, 2020(2): 36-39. [12]刘立博, 乔及森, 许佳敏, 等. 稀土Y对挤压态7075铝合金微观组织和力学性能的影响[J]. 有色金属工程, 2022, 12(3): 47-55. Liu Libo, Qiao Jisen, Xu Jiamin, et al. Effect of rare earth yttrium on mechanical properties and microstructure of extruded 7075 aluminum alloy[J]. Nonferrous Metals Engineering, 2022, 12(3): 47-55. [13]周 炎, 夏涵羿, 史 坤, 等. 升温时效对7050铝合金组织及性能的影响[J]. 特种铸造及有色合金, 2021, 41(6): 730-733. Zhou Yan, Xia Hanyi, Shi Kun, et al. Effects of heating-aging on the microstructure and properties of 7050 aluminum alloy[J]. Special Casting and Nonferrous Alloys, 2021, 41(6): 730-733. [14]马青娜, 邵 飞, 白林越, 等. 7075铝合金FSW接头腐蚀疲劳性能及断裂特征[J]. 焊接学报, 2020, 41(6): 72-78. Ma Qingna, Shao Fei, Bai Linyue, et al. Study on corrosion fatigue properties and fracture characteristics of 7075 aluminum alloy FSW joint[J]. Transactions of the China Welding Institution, 2020, 41(6): 72-78. [15]郭 伟. 7075铝合金应力时效强化与机制研究[D]. 秦皇岛: 燕山大学, 2015. |