师资情况

Faculty

| 材料先进焊接与连接技术研究室

科研团队

首席教授
研究室成员
  • 陈树海

    系所:材料加工与控制工程系

    职称: 教授

    E-mail: shchen@mater.ustb.edu.cn

    办公地点:主楼402

  • 赵兴科

    系所:材料加工与控制工程系

    职称: 副教授

    E-mail: xkzhao@ustb.edu.cn

    办公地点:主楼402

  • 杨健

    系所:材料加工与控制工程系

    职称: 副教授

    E-mail: j.yang@ustb.edu.cn

    办公地点:402

  • 叶政

    系所:材料加工与控制工程系

    职称: 博士后

    E-mail: 13401162103@163.com

    办公地点:主楼416

  • 王万里

    系所:材料加工与控制工程系

    职称: 工程师

    E-mail: wanli_wang89@sina.com

    办公地点:主楼416

  • 汪小培

    系所:材料加工与控制工程系

    职称: 副教授

    E-mail: xiaopei.wang@ustb.edu.cn

    办公地点:主楼403

  • 主要研究方向
  • 代表性科研项目
  • 代表性科研成果
  • 专利
  • 1. 新型钢铁材料熔化焊接物理冶金

    2. 材料焊接/连接新技术

    3. 先进材料及异种材料连接;

    4. 电子封装微连接技术、材料及可靠性;

    5. 材料涂层技术;

    6. 先进材料粉末冶金。

     


  • 1. 国家“973”计划:ⅩⅩ纳米增强ⅩⅩⅩ高强韧钢及焊接结构的重大基础研究;

    2. 国家“973”计划:“高性能ⅩⅩ发动机ⅩⅩⅩⅩ关键基础问题研究”;

    3. 国家“863”计划:“新型发动机陶瓷及陶瓷基复合材料/金属连接新技术”;

    4. 国家重点研发计划:磁约束核聚变能发展研究-高导热 W 基复合材料制备与结构设计;

    5. 国家科技支撑计划:数控涂层基体脱β层生长动力学研究及梯度结构设计

    6. 国家自然科学基金:基于多机制复合效应的Cf/SiC复合材料与GH3044高温合金连接基础研究;

    7. 国家自然科学基金:镀锌超高强钢/铝合金摩擦塞-铆复合点焊周向摩擦界面热-力行为控制机理;

    8. 国家自然科学基金:基于分子动力学的液相金属/固相陶瓷反应润湿行为及机理研究;

    9. 国家自然科学基金:基于新一代高温功率芯片封装的Ni-Sn TLPS连接特性与动力学研究;

    10. 国家自然科学基金:基于热物理模拟的钢铝异种金属熔钎焊界面反应与力学行为调控机理研究;

    11. 总装“十三五”装备预研共用技术项目:ⅩⅩⅩⅩⅩ复合材料与高温合金钎焊技术研究;

    12. 总装“十三五”装备预研基金(重点):陶瓷基复合材料与金属复杂构件焊接技术;

    13. 总装“十三五”装备预研基金:单晶高温合金表面缺陷修复组织调控技术;

    14. 总装“十三五”装备预研基金:钢/钨热等静压连接技术;

    15. 总装“十三五”装备预研基金:不锈钢与Cf/SiC复合材料高性能钎焊技术。

     


  • 1. Wang Y, Peng X, Huang J*, et al. Studies of Cu-Sn interdiffusion coefficients in Cu3Sn and Cu6Sn5 based on the growth kinetics[J]. Scripta Materialia, 2021, 204: 114138.

    2. Wang Y, Wang W, Huang J*, et al. Joining of Cf/SiC composite and 304 stainless steel assisted by surface honeycomb modification[J]. Journal of the European Ceramic Society, 2021, 41(14): 6824-6833.

    3. Ye Z, Huang J*, Cheng Z, et al. Interfacial characteristics and mechanical properties of aluminum/steel butt joints fabricated by a newly developed high-frequency electric cooperated arc welding-brazing process[J]. Journal of Materials Processing Technology, 2021, 298: 117317.

    4. Xu H, Zhao Y, Yang J*, et al. Investigation on wetting behavior and mechanism of AgCu-Xwt.% Ti filler metal/AlN ceramic reactive wetting system: Experiments and first-principles calculations[J]. Journal of Alloys and Compounds, 2021, 869: 159323.

    5. Meng Y, Ma Y, Chen S*, et al. Friction stir butt welding of magnesium alloy to steel by truncated cone-shaped stirring pin with threads[J]. Journal of Materials Processing Technology, 2021, 291: 117038.

    6. Yang J*, Yang Z, Lei X, et al. Behavior and mechanism for Boron atom diffusing across tungsten grain boundary in the preparation of WB coating: A first-principles calculation[J]. Applied Surface Science, 2021, 543: 148778..

    7. Sun X, Li W, Huang J*, et al. Microstructure and properties of in-situ Ti5Si3-TiC composite coatings by reactive plasma spraying[J]. Applied Surface Science, 2020, 508: 145264.

    8. Wang Y, Wang W, Huang J*, et al. Composite brazing of C/C composite and Ni-based superalloy using (Ag-10Ti)+ TiC filler material[J]. Journal of Materials Processing Technology, 2021, 288: 116886.

    9. Yang J*, Li H, Lei X, et al. Reactive wetting behavior and mechanism of AlN ceramic by CuNi-Xwt% Ti active filler metal[J]. Ceramics International, 2020, 46(4): 4289-4299.

    10. Wang W, Wang Y, Huang J*, et al. Joining of Cf/SiC composite and stainless steel via Ag+ Ti filler in-situ alloying[J]. Journal of Materials Processing Technology, 2019, 274: 116295.

    11. Wang Y, Wang W, Huang J*, et al. Reactive composite brazing of C/C composite and GH3044 with Ag–Ti mixed powder filler material[J]. Materials Science and Engineering: A, 2019, 759: 303-312.

    12. Wang W, Huang J*, Wang Y, et al. A novel process with the characteristics of low-temperature bonding and high-temperature resisting for joining Cf/SiC composite to GH3044 alloy[J]. Journal of the European Ceramic Society, 2019, 39(16): 5468-5472.

    13. Wang Y, Huang J*, Ye Z, et al. Growth Kinetics of Ni 3 Sn 4 in the Solid–Liquid Interfacial Reaction[J]. Metallurgical and Materials Transactions A, 2019, 50(7): 3038-3043.

    14. Yang J, Wang Y, Huang J*, et al. First-principles calculations on interface structure and fracture characteristic of TiC/TiZrC nano-multilayer film based on virtual crystal approximation[J]. Journal of Alloys and Compounds, 2018, 755: 211-223.

    15. Zhang Y, Huang J*, Ye Z, et al. Influence of welding parameters on the IMCs and the mechanical properties of Ti/Al butt joints welded by MIG/TIG double-sided arc welding-brazing[J]. Journal of Alloys and Compounds, 2018, 747: 764-771.

    16. Lei X, Dong S, Huang J*, et al. Phase evolution and mechanical properties of coarse-grained heat affected zone of a Cu-free high strength low alloy hull structure steel[J]. Materials Science and Engineering: A, 2018, 718: 437-448.

    17. Yang J*, Wang Y, Huang J, et al. First-principles calculations on interface structure and fracture characteristic of TiC/TiZrC nano-multilayer film based on virtual crystal approximation[J]. Journal of Alloys and Compounds, 2018, 755: 211-223..

    18. Wang W, Fan D, Huang J*, et al. Microstructural mechanism and mechanical properties of Cf/SiC composite/TC4 alloy joints composite-diffusion brazed with TiZrCuNi+ TiCp composite filler[J]. Materials Science and Engineering: A, 2018, 728: 1-9.

    19. Cheng Z, Huang J*, Ye Z, et al. Microstructures and mechanical properties of copper-stainless steel butt-welded joints by MIG-TIG double-sided arc welding[J]. Journal of Materials Processing Technology, 2019, 265: 87-98.

    20. Sun X, Huang J*, Yang J, et al. Microstructure evolution and mechanical properties of in-situ bimodal TiC-Fe coatings prepared by reactive plasma spraying[J]. Ceramics International, 2019, 45(5): 5848-5857.

     


  • 1. 黄继华,王万里,王永雷,俞瑞华,李昌林,杨建,陈树海,赵兴科. 一种C-f/C及C-f/SiC复合材料与不锈钢的自合金化连接方法[P].CN109180212B,2021-06-25.

    2. 黄继华,王万里,王永雷,陈帅,杨健,陈树海,赵兴科. Cf/SiC复合材料与Ni基高温合金的反应复合扩散钎焊连接方法[P].CN110480112B,2021-03-12.

    3. 黄继华,孙轩,杨健,陈树海. 钛合金表面的纳米碳化钛增强的钛基复合涂层的制备方法[P].CN110373625B,2021-02-12.

    4. 陈树海,李建宇,黄继华,杨健. 一种轻合金与钢的摩擦塞-铆复合点焊方法[P].CN110773889B,2021-02-26.

    5. 杨健,陆超,王玥,张知航,黄继华,陈树海,叶政. 一种减材制备中间层的钨镍铁合金与高强钢扩散焊接方法[P].CN113523471A,2021-10-22.

    6. 黄继华,孙轩,杨健,陈树海. 一种钛-硅-碳系反应喷涂复合粉末及其制备方法[P].CN110387517B,2020-12-01.

    7. 黄继华,王永雷,王万里,俞瑞华,李昌林,杨建,陈树海,赵兴科. 一种C_f/C复合材料与镍基高温合金的复合钎焊连接方法[P].CN109047963B,2020-11-27.

    8. 黄继华,程志,叶政,杨健,陈树海,赵兴科. 一种钛-钢板材对接双热源低热输入钎焊方法[P].CN108296584B,2020-08-25.

    9. 黄继华,程志,叶政,杨健,陈树海,赵兴科. 一种大热导率失配金属材料双热源协同焊接方法及装置[P].CN108436234B,2020-06-19.

    10. 黄继华,叶政,谢立,程志. 一种高频-激光填丝复合焊接装置及方法[P].CN107803593B,2019-12-13.

    11. 黄继华,孙轩,杨健,陈树海. 一种球形钛-铁-碳系反应喷涂复合粉末及其制备方法[P].CN108247038B,2019-10-18.

    12. 黄继华,冯洪亮,张洁,翟晓冬. 一种低温连接的耐高温封装连接材料及其封装连接工艺[P].CN105070693A,2015-11-18..

    13. 黄继华,刘晓君,陈树海,赵兴科. 一种钛合金表面真空钎涂金属陶瓷复合涂层的方法[P].CN104264148A,2015-01-07.

    14. 黄继华,范东宇,崔冰,赵小朋,陈树海,赵兴科. 一种超高温或大温差环境下剪切强度测试装置[P].CN204255829U,2015-04-08.

    15. 黄继华,羊浩,杨文静,王奇,李德华,曹珍珍. 一种Zn-Al-Cu基钎料及其制备方法[P].CN103302417A,2013-09-18.

    16. 黄继华,崔冰,蔡创,陈树海,赵兴科,张华,汪一卉. 一种Cf/SiC陶瓷基复合材料与钛合金的复合-扩散钎焊方法[P].CN102825353A,2012-12-19.

    17. 黄继华,羊浩,杨文静,王奇,李德华,曹珍珍. 一种铝/铜钎焊用锡基钎料及其制备方法[P].CN103317252A,2013-09-25.

    18. 黄继华,羊浩,杨文静,王奇,李德华,曹珍珍. 一种铝/铜钎焊用锌基钎料及其制备方法[P].CN103317255A,2013-09-25.

    19. 黄继华,羊浩,杨文静,王奇,李德华,曹珍珍. 一种铝/铜钎焊用Zn-Al-Cu基钎料及其制备方法[P].CN103317253A,2013-09-25.

    20. 黄继华,牛志伟,羊浩,陈树海,王奇,李德华. 一种Al-Si-Zn-Ge系低熔点铝基钎料及其制备方法[P].CN102862002A,2013-01-09.

     


地址:海淀区学院路30号| 邮编:100083|版权所有:©北京科技大学|京公网安备:110402430062 |京ICP备:13030111号-1