宋玉来
2021-03-28 由:发布 浏览: 阅读次数: 次
基本信息
姓名:宋玉来
职称:讲师
学位:工学博士
毕业院校:东北大学
专业:有色金属冶金
电子信箱: songyulai@lcu.edu.cn
教育及工作经历:
2013年7月毕业于江西理工大学(原南方冶金公司)冶金公司冶金工程专业,获工学学士学位;2016年3月毕业于辽宁科技大学(原鞍山钢铁公司)材料与冶金公司冶金工程专业,获工学硕士学位;2021年1月毕业于东北大学(原东北工公司)冶金公司有色金属冶金专业,获工学博士学位;同年3月入职信誉最好的十大体育平台金属材料工程专业。
研究方向:
1)粉末冶金;
2)难熔金属与硬质材料;
3)高熵化合物;
4)燃烧合成与焊接。
讲授课程:
粉末冶金基础,大学化学实验,金属材料学实验。
科研项目:
1)国家自然科学基金联合重点项目,利用铜渣直接冶炼含铜抗菌不锈钢的基础研究,2017,参与.
2)国家自然科学基金联合基金项目,辽宁低铁高钒钛特有钒钛磁铁矿直接冶炼工艺的科学基础,2020,参与.
3)横向课题,高性能金属钛及钛合金战略新材料,参与.
学术兼职:
1)中国有色金属学会会员;山东机械工程学会粉末冶金专委会委员。
2)Scientific Reports期刊编委(Editorial Board Member),维泽专家库(VE)材料科学专家委员会成员。
3)Journal of Alloys and Compounds、Vacuum、EPL、Advanced Theory and Simulations、Nanotechnology Reviews、Applied Physics A等多本国际期刊审稿人。
以第一/通讯作者发表学术论文:
[1] Effect of C atomic concentration on the structural, mechanical, thermodynamic, and electronic properties of Cr-C binary carbides. J. Mater. Sci. (2025) https://doi.org/10.1007/s10853-025-11801-w.
[2] The structural, thermodynamic, mechanical and electronic properties of multi-phase WC-Co cemented carbides. Phys Status Solidi A (2025) e202500616.
[3] Exploring the pressure effect on structural, elastic and thermodynamic properties of transition metal carbides using first-principles calculations. Mater. Today Commun. 43 (2025) 111666.
[4] Exploring the structural, elastic, electronic and thermal properties of Ti-Al-Me (Me="Cu," Fe and Ni) alloys by first-principles studies. Sci Rep 14 (2024) 31390.
[5] First-principles study on the structural, mechanical and thermodynamic properties of Cu-Cr-Zr alloy. Physica B 685 (2024) 416029.
[6] Study on the preparation process of TiAl alloy by self-propagating metallurgy. J. Mater. Eng. Perform. 33 (2024) 660-669.
[7] Thermodynamic insight into the equilibrium component prediction in the Al-Ti-Ca-oxide system. Arch. Metall. Mater. 68 (2023) 1319-1326.
[8] Enhancement of in-situ NbC oxidation with size reduction and its effect on electrochemical corrosion resistance of Cu-matrix composites. Ceram. Int. 49 (2023) 37040-37045.
[9] Novel insight into the preparation of Ti-6Al-4V alloy through thermite reduction based on the mass action concentration. J. Wuhan Univ. Technol., Mater. Sci. Ed. 38 (2023) 652-658.
[10] Mechanisms of metal-slag separation behavior in thermite reduction for preparation of TiAl alloy. J. Mater. Eng. Perform. 30 (2021) 9315-9325.
[11] Research progress on the extractive metallurgy of titanium and its alloys. Miner. Process. Extr. Metall. Rev. 42 (2021) 535-551.
[12] Preparation of TiAl master alloy by metallothermic reduction. Rare Metal Mat Eng 49 (2020) 1015-1019.
[13] A novel continuous and controllable method for fabrication of as-cast TiAl alloy. J. Alloys Compd. 789 (2019) 266-275.
[14] First-principles calculation on the structural, elastic and thermodynamic properties of Ti-Al intermetallics. Mater. Res. Express 6 (2019) 1065a4.
专利:
一种原位碳化物增强粘结相的抗磨蚀硬质合金制备方法,国家发明专利,2025.