[1] 武英杰, 林俊良, 王 川. 超细铜线的组织及性能研究[J]. 热加工工艺, 2025, 54(11): 144-147. Wu Yingjie, Lin Junliang, Wang Chuan. Study on microstructure and properties of ultrafine copper wire[J]. Hot Working Technology, 2025, 54(11): 144-147. [2] 范雪圆, 王 硕, 顾 建, 等. 冷拉拔铜线强度和微观组织的演化机制定量研究[J]. 金属热处理, 2024, 49(10): 169-174. Fan Xueyuan, Wang Shuo, Gu Jian, et al. Quantitative study on evolution mechanisms of strength and microstructure of cold drawn Cu wire[J]. Heat Treatment of Metals, 2024, 49(10): 169-174. [3] 罗 云, 刘 莹, 钟志强. 浅析杂质元素对铜杆质量的影响[J]. 有色金属加工, 2012, 41(3): 26-30. Luo Yun, Liu Ying, Zhong Zhiqiang. Analysis on influence of impurity element on the quality of copper rod[J]. Nonferrous Metals Processing, 2012, 41(3): 26-30. [4] 汪建华. 杂质元素对SCR生产过程及铜杆质量的影响[J]. 中国金属通报, 2008(49): 40-41. [5] 刘 强, 崔建忠, 许光明. 氧、氢硫含量对上引法连铸工艺过程及产品质量的影响[J]. 材料与冶金学报, 2003(3): 181-184. Liu Qiang, Cui Jianzhong, Xu Guangming. Influences of O, H and S on up-cast process stability and product quality[J]. Journal of Materials and Metallurgy, 2003(3): 181-184. [6] 张宏涛. 提高SCR生产线铜杆过线成功率的措施[J]. 世界有色金属, 2021(13): 134-135. Zhang Hongtao. Measures to improve the success rate of copper rods in SCR production line[J]. World Nonferrous Metals, 2021(13): 134-135. [7] 叶斌民, 张伟旗. 提高SCR生产线铜杆过线成功率的措施[J]. 特种铸造及有色合金, 2011, 31(4): 388-390. Ye Binmin, Zhang Weiqi. Improvement of qualification rate of copper rod in SCR production line[J]. Special Casting & Nonferrous Alloys, 2011, 31(4): 388-390. [8] 周建平, 胡毅光, 刘卫红, 等. 浅析氧含量对铜杆电气、机械及加工性能的影响[J]. 矿冶工程, 2010, 30(2): 99-101. Zhou Jianping, Hu Yiguang, Liu Weihong, et al. Effects of oxygen content on electrical mechanical and processing properties of copper rod[J]. Mining and Metallurgical Engineering, 2010, 30(2): 99-101. [9] 李才巨, 黄素贞, 张代明, 等. 冷轧及退火工艺对纯铜力学性能的影响[J]. 金属热处理, 2007, 32(10): 66-68. Li Caiju, Huang Suzhen, Zhang Daiming, et al. Effects of cold rolling and annealing on mechanical properties of pure copper[J]. Heat Treatment of Metals, 2007, 32(10): 66-68. [10] 毛西秦, 肖秋雷, 欧梅桂, 等. 退火工艺对T2纯铜线材组织和性能的影响[J]. 金属热处理, 2020, 45(7): 7-11. Mao Xiqin, Xiao Qiulei, Ou Meigui, et al. Effect of annealing process on microstructure and properties of pure copper wire T2[J]. Heat Treatment of Metals, 2020, 45(7): 7-11. [11] 刘若絮, 毛西秦, 欧梅桂, 等. 冷拉拔变形对纯铜组织及性能的影响[J]. 有色金属科学与工程, 2022, 13(2): 67-75. Liu Ruoxu, Mao Xiqin, Ou Meigui, et al. Effect of cold drawing deformation on the microstructure and properties of pure copper[J]. Nonferrous Metals Science and Engineering, 2022, 13(2): 67-75. [12] 江海涛, 徐 辉, 蔡正旭, 等. SCR法生产电工用铜杆的组织转变过程研究[J]. 热加工工艺, 2013, 42(11): 30-32. Jiang Haitao, Xu Hui, Cai Zhengxu, et al. Study on microstructure converting of copper rods for electrical engineering produced by SCR[J]. Hot Working Technology, 2013, 42(11): 30-32. [13] 许双辉, 何国爱. 退火温度对铝钛强韧的CrCoNi中熵合金组织与性能的影响[J]. 金属热处理, 2024, 49(1): 142-147. Xu Shuanghui, He Guoai. Effect of annealing temperature on microstructure and properties of Al-Ti toughened CrCoNi medium-entropy alloy[J]. Heat Treatment of Metals, 2024, 49(1): 142-147. [14] 黄崇祺. 电工用铜线的性能和提高铜线质量的对策[J]. 电线电缆, 2008(3): 1-7. Huang Chongqi. Properties of the electrical copper conductors and method to improve the quality of the copper conductors[J]. Electric Wire and Cable, 2008(3): 1-7. [15] 陈文博. 加工工艺及氧含量对石墨烯用压延铜箔的影响[D]. 郑州: 郑州大学, 2018. [16] 姚新澜. 电子束选区熔化制备纯铜晶粒尺寸调控及氧化物析出研究[D]. 西安: 西安理工大学, 2024. [17] 蒙品品, 张晓波. 退火处理对纯铜微观组织及力学性能的影响[J]. 金属热处理, 2024, 49(7): 267-273. Meng Pinpin, Zhang Xiaobo. Effect of annealing treatment on microstructure and mechanical properties of pure copper[J]. Heat Treatment of Metals, 2024, 49(7): 267-273. [18] 杨红军, 姬会爽, 邱进兵, 等. 精密微细线用ø8 mm铜杆的生产技术改进和工艺参数优化[J]. 铜业工程, 2024(4): 113-121. Yang Hongjun, Ji Huishuang, Qiu Jinbing, et al. Research on production technology improvement and process parameter optimization of ø8 mm copper rod for precision microwires[J]. Copper Engineering, 2024(4): 113-121. [19] 初树晟. H62黄铜摩擦塞补焊技术研究[D]. 兰州: 兰州理工大学, 2023. |