材料加工与控制工程系

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材料系 材加系 材物系 无机系 粉末冶金与先进陶瓷研究所

 

姓  名: 叶政
所在系所: 材加系
职  务: 干部
职  称: 讲师
通信地址: 北京市海淀区学院路30号大阳城8722
邮  编: 100083
办公地点: 主楼416
电  话: 010-62334859
邮  箱: 13401162103@163.com
传  真:

    材料先进焊接与连接技术(异种材料连接、多能场复合焊接、激光焊)

    2008-2012大阳城8722(中国)责任有限公司 本科;

    2012-2019大阳城8722(中国)责任有限公司 硕博连读

    期刊论文

    [1] Ye Z, Huang J*, Yang W, et al. Corrosion behaviors in the brazed seam of Al/Cu dissimilar joints brazed by Zn-Al alloys[J]. Welding in the World, 2020: 1-9.

    [2] Ye Z, Huang J*, Yang H, et al. Effect of Si addition on corrosion behaviors of Cu/Al dissimilar joint brazed with novel Zn-Al-xSi filler metals[J]. Journal of Materials Research and Technology, 2019, 8(6): 5171-5179.

    [3] Ye Z, Huang J*, Cheng Z, et al. A novel high efficiency low heat input welding method: high frequency electric cooperated arc welding[J]. Materials Letters, 2019, 252: 142-145.

    [4] Ye Z, Huang J*, Cheng Z, et al. Join Al–steel dissimilar metal by novel high frequency electric cooperated arc welding[J]. Science and Technology of Welding and Joining, 2019, 24(8): 721-723.

    [5] Ye Z, Huang J*, Cheng Z, et al. Study on butt joining 5052 aluminum alloy/Q235 mild steel by MIG-TIG double-sided arc welding-brazing process[J]. Welding in the World, 2018, 62(1): 145-154.

    [6] Ye Z, Yang H, Huang J*, et al. A novel Zn-Al-Si corrosion resistant filler metal for Cu/Al brazing[J]. Materials Letters, 2017, 206: 201-204.

    [7] Ye Z, Huang J*, Cheng Z, et al. Combined effects of MIG and TIG arcs on weld appearance and interface properties in Al/steel double-sided butt welding-brazing[J]. Journal of Materials Processing Technology, 2017, 250: 25-34.

    [8] Ye Z, Huang J*, Gao W, et al. Microstructure and mechanical properties of 5052 aluminum alloy/mild steel butt joint achieved by MIG-TIG double-sided arc welding-brazing[J]. Materials & Design, 2017, 123: 69-79.

    [9] Niu Z, Ye Z, Huang J*, et al. Interfacial structure and properties of Cu/Al joints brazed with Zn-Al filler metals[J]. Materials Characterization, 2018, 138: 78-88.

    [10] Yang J, Ye Z, Huang J*, et al. First-principles calculations on wetting interface between Ag-Cu-Ti filler metal and SiC ceramic: Ag (1 1 1)/SiC (1 1 1) interface and Ag (1 1 1)/TiC (1 1 1) interface[J]. Applied Surface Science, 2018, 462: 55-64.

    [11] 叶政, 羊浩, 黄继华*, . 保温时间对铝/铜钎焊接头界面化合物和力学性能的影响[J]. 焊接学报, 2016, 37(12): 9-12.

    专利

    [1] 黄继华, 叶政, 程志. 一种高频-电弧复合焊接方法, 201710890587.1. 2017.

    [2] 黄继华, 叶政, 谢立. 一种高频-激光填丝复合焊接方法及装置, 201710890634.2. 2017.

    [3] 黄继华, 程志, 叶政. 一种大热导率失配金属材料双热源协同焊接方法及装置,  201810186528.0. 2018.

    [4] 黄继华, 程志, 叶政.一种钛-钢板材对接双热源低热输入钎焊方法, 201810130330.0, 2018. 

    1)中国博士后科学基金,2020M680346,高效/可控热特性高频电协同电弧焊接方法研究,主持

    2)中央高校基本科研业务费,FRF-TP-19-040A1,钢/铝异种金属高频电协同电弧对接熔钎焊工艺特性研究,主持

    3)青年教师学科交叉研究项目,FRF-IDRY-20-016,基于化学镀的电子封装Cu-Sn核壳粉末制备及其瞬时液相烧结(TLPS)连接特性研究,主持