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研究生导师--韩俭
2021-07-02 13:02  

bz博中手机诚信网投研究生导师介绍

姓名

韩俭

出生年月

 

 

性别

学历学位

博士

职称

教授

导师类型

硕士生导师

联系电话

13564797997

所属学院

材料学院

Email

hj_tjut@vip.126.com

人才称号


学术兼职

中国机械工程学会焊接分会金属焊接性及焊接材料分委会委员

招生专业

材料科学与工程

材料与化工

研究方向

电弧增材制造、激光增材制造、轻合金大塑性变形、钢铁/合金及其高校焊接

1、科研项目:近期,限10项

梯度材料、金属间化合物等先进材料的电弧增材制造;

高熵合金、钛合金等先进材料的激光熔覆及增材制造;

医用镁合金的大塑性变形(搅拌摩擦、等通道挤压等);

车轮用钢、管线钢等传统钢铁材料的焊接;

智能制造、焊接过程的智能控制等。

2、论文、专著:近期代表作,限10篇(部)

1. Comparative study on crystallographic orientation, precipitation, phase transformation and mechanical response of Ni-rich NiTi alloy fabricated by WAAM at elevated substrate heating temperatures, Materials Science & Engineering A, 800(140307)(2021), 1-12.

2. Fracture and wear mechanisms of FeMnCrNiCo + x(TiC) composite high-entropy alloy cladding layers, Applied Surface Science, 543(148794)(2021): 1-16.

3. Effect of TIG remelting on microstructure, corrosion and wear resistance of coating on surface of 4Cr5MoSiV1, Surface & Coatings Technology, 405(126547)(2021), 1-13.

4. Manufacturing of FecoCrNi+FeCoCrNiAl laminated high-entropy alloy by laser melting deposition (LMD), Materials Letters, 289(129445)(2021), 1-5.

5. Microstructure and mechanical properties of Ti-3Al-2V alloy by dual wire + arc additive manufacturing, Materials Letters, 299(130109)(2021), 1-4.

6. Microstructure and mechanical properties of a functionally graded material from TA1 to Inconel 625 fabricated by dual wire + arc additive manufacturing, 298(130010)(2021), 1-4.

7. Enhancing the (FeMnCrNiCo+TiC) cladding layer by in-situ laser remelting, Surface Engineering, Doi.org/10.1080/02670844.2020.1868651 (2021), 1-7.

8. Effect of Luders bands by strain ageing on strain distribution, microstructure and texture evolution of high-strength pipe steel, Acta Mettallurgica Sinica (English Letters), Doi.org/10.1007/s40195-020-01148-3+B15 (2021), 1-11.

9. Characteristic flow behaviour prediction and microstructure analysis of a commercial Si-Cr micro-alloyed spring steel under isothermal compression, Vacuum, 186(110066)(2021), 1-11.

10. Fabrication and characterization of friction stir-processed Mg-Zn-Ca biomaterials strengthened with MgO particles, The International Journal of Advanced Manufacturing Technology, (accept).

3、其他成果(奖励、专利等):

 

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