杨化冰

发布时间:2025-04-23浏览次数:10

办公电话:053188728307

电子邮件:yanghb@sdas.orgyanghb1990@126.com

通讯地址:济南市历城区经十东路28789号

邮政编码:250014

一、个人简历

2020.09-至今助理研究员,齐鲁工业大学,材料科学与工程学部

2014.092019.12  山东大学   材料科学   博士

2010.092014.06  山东大学   材料科学   

二、研究方向

要从事性能铝合金材料设计、相和相变调控,研究关键词铝合金熔体凝固形核热处理强韧化,性能,导电导耐腐蚀性能

三、科研项目 

1新型非均质Al2O3/Al纳米复合材料的合成及其强韧化机山东省科学基金青年项,15结题

2.铝复合材料中纳米粒线状构型的构筑及其强韧化机齐鲁大学工究类,10结题

3于异质形核调控的强韧TiCx/Al-Cu异构复合材料设计及其超塑性变形齐鲁大学人科研项19.57结题

4.高导热Al-Mg-Si合金开发,高校技术研发,3万,主持,结题。

5.高导电铝合金部件材料成分设计、铸造工艺及热处理技术开发,企业技术研发,40万,主持,在研。

四、代表性论文

期刊论文

[1] H.B. Yang Z. Qian, H.W. Chen, X.J. Zhao, G. Han, W.Z. Du, X. Nie, K. Zhao, G.L. Liu, Q.Q. Sun, T. Gao, J.X. Zhou, J.F. Nie, X.F. Liu, A new insight into heterogeneous nucleation mechanism of Al by non-stoichiometric TiCx, Acta Mater. 233 (2022) 117977.

[2] H.B. Yang, C.C. Sun, Y. Li, K.M. Cheng, Y.T. Liu, J.H. Wu, H.T. Liu, J. Wang, D.Q. Zhao, L.H. Song, X.S. Feng, J.X. ZhouX.F. Liu, Effect of grain size and dislocation density on thermal stability of

Al-Cu-Mg alloy, Materialia 38 (2024) 102276.

[3H.B. Yang, Y.T. Liu, Y. Li, S.Q. Zhang, J.H. Wu, H. Yu, H.T. Liu, B.C. Ma, H.H. Zhuang, X.S. Feng, P. Zhang, J.X. Zhou, X.F. Liu, Influence of Cu/Mg ratio and content on heat-resistance of Al–Cu–Mg alloysJ. Mater. Res. Technol. 29 (2024) 1040–1051.

[4H.B. YangK. Zhao, J.F. Nie, X.F. Liu, The enhanced superplasticity of a 2024 matrix nanocomposite reinforced by TiC particles, Mater. Sci. Eng. A 774 (2020) 138926.

[5H.B. Yang, T. Gao, H.N. Zhang, J.F. Nie, X.F. Liu, Enhanced age-hardening behavior in Al–Cu alloys induced by in-situ synthesized TiC nanoparticles, J. Mater. Sci. Technol. 35 (2019) 374–382.

[6] H.B. Yang, T. Gao, G.L. Liu, X.J. Zhao, H.W. Chen, H.C. Wang, J.F. Nie, X.F. Liu, Simultaneously improving strength and ductility for Al–Cu–Mg alloy via threadiness array of TiC nanoparticles, Materialia 6 (2019) 100333.

[7] H.B. Yang, S. Tian, T. Gao, J.F. Nie, Z.S. You, G.L. Liu, H.C. Wang, X.F. Liu, High-temperature mechanical properties of 2024 Al matrix nanocomposite reinforced by TiC network architecture, Mater. Sci. Eng. A 763 (2019) 138121.

[8] H.B. Yang, Z. Qian, G.J. Zhang, J.F. Nie, X.F. Liu, The grain refinement performance of B-doped TiC on Zr-containing Al alloys, J. Alloys Compd. 731 (2018) 774–783.

[9] H.B. Yang, T. Gao, Y.Y. Wu, H.N. Zhang, J.F. Nie, X.F. Liu, Microstructure and mechanical properties at both room and high temperature of in-situ TiC reinforced Al–4.5 Cu matrix nanocomposite, J. Alloys Compd. 767 (2018) 606–616.

[10] H.B. Yang, T. Gao, H.C. Wang, J.F. Nie, X.F. Liu, Influence of C/Ti stoichiometry in TiCx on the grain refinement efficiency of Al–Ti–C master alloy, J. Mater. Sci. Technol. 33 (2017) 616–622.

会议报告

[1] Yang, H.B., A new insight into heterogeneous nucleation mechanism of Al by non-stoichiometric TiCx, The seventh Chinese-Norwegian symposium on light metals and new energy materials, October 7-10, 2023, Tianjin, China

五、荣誉奖励

2014年山东省优秀毕业