人才信息库
张昊
性 别 最高学历 工学博士
职 称 项目研究员 专家类别 硕士生导师
部 门 材料制备与加工研究部
通讯地址 辽宁省沈阳市沈河区文化路72号
邮政编码 110016 电子邮件 haozhang@imr.ac.cn
电 话 +86-24-23971752 传 真 +86-24-83970059
简历:

教育经历

2007.09-2011.06  燕山大学 工学学士

2011.09-2014.06  兰州理工大学 工学硕士

2014.09-2018.06  中国科学院金属研究所 工学博士

工作经历

2018.07-2020.12  中国科学院金属研究所 助理研究员

2020.12-2023.10  中国科学院金属研究所 副研究员

2023.10-至今  中国科学院金属研究所 项目研究员

研究领域:

1. 激光增材制造

2. 搅拌摩擦焊接与加工

承担科研项目情况:
 
社会任职:

有色金属学会先进焊接与连接专委会委员

中国科学院青年创新促进会沈阳分会委员

获奖及荣誉:

2022年度中国科学院青年创新促进会会员;

2018年度中国科学院大学优秀毕业生;

代表论著:

1. Zhang, H., Wang, Y., Wang, J. J., Ni, D. R.*, Wang, D., Xiao, B. L.*, Ma, Z. Y. (2022). Achieving superior mechanical properties of selective laser melted AlSi10Mg via direct aging treatment. Journal of Materials Science & Technology, 108, 226-235.

2. Tang, X., Zhang, H.*, Zhu, Z. W., Xue, P., Wu, L. H., Liu, F. C., Ni D. R.*, Xiao B. L., Ma, Z. Y. (2023). Dual-phase synergistic deformation characteristics and strengthening mechanism of AlCoCrFeNi2. 1 eutectic high entropy alloy fabricated by laser powder bed fusion. Journal of Materials Science & Technology, 150, 75-85.

3. Lu, Y. X., Zhang, H.*, Xue, P., Wu, L. H., Liu, F. C., Jia, L. L., Ni D. R.*, Xiao B. L. & Ma, Z. Y. (2023). Microstructural Evaluation and Tensile Properties of Al-Mg-Sc-Zr Alloys Prepared by LPBF. Crystals, 13(6), 913.

4. Liang, M., Zhang, H., Zhang, L., Xue, P., Ni, D., Wang, W., Ma Z. Y., Ye H. Q., Yang, Z. *(2021). Evolution of quasicrystals and long-period stacking ordered structures during severe plastic deformation and mixing of dissimilar Mg alloys upon friction stir welding. Acta Metallurgica Sinica (English Letters), 34, 12-24.

5. 王悦, 王继杰, 张昊, 赵泓博, 倪丁瑞, 肖伯律, 马宗义. (2021). 热处理对激光选区熔化 AlSi10Mg 合金显微组织及力学性能的影响. 金属学报, 57(5), 613-622.

6. 秦艳利, 孙博慧, 张昊, 倪丁瑞, 肖伯律, 马宗义. (2021). 选区激光熔化铝合金及其复合材料在航空航天领域的研究进展. 中国激光, 48(14), 1402002. 22

7. Wang, Z. W., Liu, M., Zhang, H., Xie, G. M., Xue, P.*, Wu, L. H., Zhang Z., Ni D. R., Xiao B. L., & Ma, Z. Y. (2022). Welding behavior of an ultrahigh-strength quenching and partitioning steel by fusion and solid-state welding methods. Journal of Materials Research and Technology, 17, 1289-1301.

8. Wang, Z. W., Zhang, J. F., Xie, G. M., Wu, L. H., Zhang, H., Xue, P.*, Ni D. R., Xiao B. L., & Ma, Z. Y. (2022). Evolution mechanisms of microstructure and mechanical properties in a friction stir welded ultrahigh-strength quenching and partitioning steel. Journal of Materials Science & Technology, 102, 213-223.

9. Jia, C. L., Wu, L. H.*, Xue, P., Zhang, H., Ni, D. R., Xiao, B. L., Ma, Z. Y. (2022). Static spheroidization and its effect on superplasticity of fine lamellae in nugget of a friction stir welded Ti-6Al-4V joint. Journal of Materials Science & Technology, 119, 1-10.

10. Zhang, M., Wang, Y. D., Xue, P.*, Zhang, H., Ni, D. R.*, Wang, K. S., Ma, Z. Y. (2022). High-quality dissimilar friction stir welding of Al to steel with no contacting between tool and steel plate. Materials Characterization, 191, 112128.

11. Wang, Y. D., Wu, L. H., Xue, P., Zhang, H., Ni, D. R.*, Ma, Z. Y. *(2022). Improved strength with good conductivity in Cu–Cr–Zr alloys: Determinant effect of under-aging treatment before rolling and aging. Materials Science and Engineering: A, 848, 143395.

12. Wang, Z., Zhang, M., Li, C., Niu, F., Zhang, H., Xue, P.*, Ni D.*, Xiao B. Ma, Z. (2023). Achieving a high-strength dissimilar joint of T91 heat-resistant steel to 316L stainless steel via friction stir welding. International Journal of Minerals, Metallurgy and Materials, 30(1), 166-176.

13. Zhang, M., Liu, F. C.*, Liu, Z. Y., Xue, P*., Dong, P., Zhang, H., Wu L.H., Ni D.R., Ma, Z. Y. (2023). Highly stable nanoscale amorphous microstructure at steel-aluminum interface enabled by a new solid-state additive manufacturing method. Scripta Materialia, 227, 115300.

近期获得专利:

1. CN112536446B,一种制备高强韧铝硅系合金或其复合材料的激光增材与热处理复合工艺;张昊,倪丁瑞,马宗义,赵泓博,肖伯律,王东,王全兆,薛鹏,授权日期:2022.03.08

2. CN113801984B,一种同步提升低碳钢强度和塑性的塑性变形加工工艺;薛鹏,王志伟,倪丁瑞,张昊,吴利辉,马宗义,肖伯律,授权日期:2023.03.21

 
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