职称:副教授,硕士生导师,青海省高端创新人才拔尖人才
电话:18897012713
邮箱:weifuan2007@163.com
研究方向:金属材料的合成、制备及表征。
教育状况
2012.09-2016.06 兰州理工大学 材料物理与化学 博士
从业经历
2016.07-2020.12 任williamhill中国官方网站讲师
2020.12-至今 任williamhill中国官方网站副教授
奖励及荣誉
1. 2016年入选青海省千人计划人才项目
2. 201606获甘肃省优秀博士学位论文获得者
详细介绍
1. 主持与参与的主要科研项目和成果
[1] 202201-202412,含双峰组织Mg-3Al-1Zn-xSn合金的制备,及强韧化机理和阻尼性能研究,青
海省科技厅基础研究项目,项目编号:2022-ZJ-709,经费30万人民币,主持,在研。
[2] 202401-202512,Mg-6Sn-3Al-1Zn合金的双峰组织调控,williamhill中国官方网站盐湖化工大型系列研究设施
自主课题项目,项目编号:2023-DXSSZZ-01,经费10万人民币,主持,在研。
[3] 202401-202512,基于材料素化的多尺度Mg-Al-Zn合金强韧化机制研究,williamhill中国官方网站盐湖化工大型
系列研究设施开放课题项目,项目编号:2023-DXSSZZ-01,经费10万人民币,主持,在研。
[4] 201707-201912,包套温轧及退火工艺对Mg-3Al-Zn-6Sn合金组织和性能的影响机制,青海省科
技厅青年基金,项目编号:2017-ZJ-917Q,经费20万元,主持,已结题。
[5] 202001-202112,新型高性能Mg-Al-Y合金的制备及耐热机理研究,青海省科技厅应用基础研
究,项目编号:2020-ZJ-707,经费45万元,第一参与人,已结题。
[6] 202307-202606,Φ 300mm 级粉末高温合金棒材挤压比≥8:1 挤压成形技术研究,国家重点研发
计划,项目编号:2022YFB3404503,经费51.94万元,第六参与人,在研。
[7] 201801-202012,高强韧非晶/纳米晶镁基复合材料的制备及其组织性能研究,青海省科技厅自然
基金(青年基金),项目编号:2018-ZJ-951Q,经费15万元,第一参与人,已结题。
2. 论文情况
[1] Xiao Liu, Dandan He, Biwu Zhu *, Wenhui Liu, Fan Ye, Fuan Wei *,Congchang Xu c,
Luoxing Li. The ordered orientation gradient "sandwich" texture induced high strength-
ductility in AZ31 magnesium alloy[J]. Scripta Materialia, 2024, 253.DOI:10.1016/j.
scriptamat. 2024.116296.
[2] Zhilan Li, Fuan Wei*, Jinhui Wang, Huihui Zhu, Bo Shi and Yong Ding. Achieving-
bimodal-microstructure-and-enhanced-tensile-properties-of-mg-6sn-3al-1zn-alloy-by-
tailoring deformation amount during pack rolling[J], Materials Science and Technology,
2024, DOI: 10.1177/02670836241275493
[3] Fuan Wei*, Shihao Zhou, Jinhui Wang, Bo Shi, Peipeng Jin, Yong Ding, Xing Guo. Effect
of extrusion temperature on microstructure, mechanical properties and corrosion
resistance of Mg-6Sn-3Al-1Zn alloy [J]. Materials Today Communications, 2023(37):
107328.
[4] Keshuang Yin, Fuan Wei*, Jinhui Wang, Hongbin Ma, Peipeng Jin. Effect of pack-rolling
temperature on microstructure and mechanical properties of Mg-6Sn-3Al-1Zn Alloy [J].
Materials Today Communications, 2023(35): 106234.
[5] Shihao Zhou, Fuan Wei*, Jinhui Wang and Peipeng Jin. Effect of extrusion ratio on
microstructure and mechanical properties of Mg-6Sn-3Al-1Zn alloy [J]. Materials
Research Express, 2022(9): 096517.
[6] Fuan Wei, Jinhui Wang, Ping Li, Bo Shi*. Enhanced Mechanical Properties of Mg-6Sn-
3Al-1Zn Alloy with Bimodal Grain Size Disturbed in the Microstructure Uniformly
through Changing the Rolling Temperature [J]. Advances in Materials Science and
Engineering, 2020: 6635507.
[7] Fuan Wei, Zhengang Zhang, Bo Shi, Chen Yang, Jinhui Wang. Effect of rolling
deformation on microstructure and mechanical Properties of Mg-6Sn-3Al-1Zn alloy [J].
Materials Research Express, 2020(7): 1-11.
[8] Fuan Wei, Jinhui Wang, Bo Shi, Zhengang Zhang. Effect of annealing time on bimodal
microstructures and tensile properties of Mg-6Sn-3Al-1Zn alloy [J]. Materials Research
Express, 2020(7): 1-12.
[9] Jinhui Wang, Fuan Wei*, Bo Shi, Yanlin Ding, Peipeng Jin. The effect of Y content on
microstructure and tensile properties of the asextruded Mg-1Al-xY alloy [J]. Materials
Science and Engineering: A, 2019(765): 1-10.
[10] Jinhui Wang, Peipeng Jin, Xiaoqiang Li, Fuan Wei*, Xin Ding, Mengna Zhang. Effect
of rolling with different amounts of deformation on microstructure and mechanical
properties of the Mg-1Al-4Y alloy[J]. Materials Characterization, 2020(161): 1-8.
[11] Fuan Wei, Hongding Wang, Peiqing La*, Fuliang Ma, Tabor Donic. Enhanced
intergranular corrosion resistance and tensile strength without much loss ductility in
304 stainless steel with dispersed nanocrystallines in microcrystalline austenite[J].
Journal of Materials Research, 2016(31): 1-11.
[12] Peiqing La*, Fuan Wei, Sulei Hu, Cuiling Li, Yupeng Wei. White cast iron with a
nano-eutecticmicrostructure and high tensile strength and considerable ductility
prepared by an aluminothermic reaction casting [J]. Materials Science and
Engineering: A, 2013 (561): 317-320.
[13] Peiqing La*, Fuan Wei, Xuefeng Lu, Chenggang Chu, Yupeng Wei, Hongding Wang.
Effect of Annealing Temperature on Microstructure and Mechanical Properties of
Bulk 316L Stainless Steel with Nano- and Micro-crystalline Dual Phases[J].
Metallurgical and Materials Transactions A, 2014 (45A): 5236-5244.
[14] Peiqing La*, Fuan Wei, Xuefeng Lu, Ting Shi, Chenggang Chu, Yupeng Wei, Hongding
Wang. Microstructures and tensile properties of 304 steel with dual nanocrystalline
and microcrystalline austenite content prepared by aluminothermic reaction casting.
Philosophical Magazine Letters, 2014 (94) 1-9.
[15] Bo Shi, Fuan Wei, Chao Li, Jiangong Li. The introduction of highly dense shear bands
and their effect on plastic deformation in Zr and Cu-based bulk metallic glasses [J].
Materials ence & Engineering A, 2017(695): 265-269.
[16] Shiyu Luan, Fuan Wei, Peipeng Jin, Bo Shi, Yuanli Xu. Power-law scaling behaviors for
shear band intersections in Zr64.13Cu15.75Ni10.12Al10 bulk metallic glass [J]. Journal
of Non-Crystalline Solids: 2017.
[17] Zhengning Li, Fuan Wei, Peiqing La,* and Jie Sheng. Enhancing Strength of
Nanolaminate 1045 Steel Prepared by Aluminothermic Reaction through Multiple Warm
Rolling [J]. Steel Research International, 2018:1700304.
[18] Zhengning Li, Fuan Wei, Peiqing La, et al. Enhancing Ductility of 1045 Nanoeutectic Steel
Prepared by Aluminothermic Reaction through Annealing at 873K[J]. Advances in
Materials Science and Engineering, 2017, 5392073.
[19] Zhengning Li, Fuan Wei, Peiqing La, Fulang Ma, Enhanced Mechanical Properties of 316L
Stainless Steel Prepared by Aluminothermic Reaction Subjected to Multiple Warm
Rolling [J], Metals and Materials International, 2018, 24(11):1-11.
[20] Bo Shi, Yuanli Xu, Fuan Wei, Shiyu Luan, Peipeng Jin, et al. Power-law scaling behaviors
for shear band intersections in Zr64.13Cu15.75Ni10.12Al10 bulk metallic glass[J]. Journal
of Non Crystalline Solids, 2017.
[21] Zhengning Li, Peiqing La, Fuan Wei. TEM observation and strengthening mechanism of
cementite nanoparticles of heterogeneous structure 1045 steel[J]. Materials Research
Express, 2021(8):086502.
[22] 魏福安*, 师婷, 尹克爽. 两道次包套轧制变形量对 Mg-6Sn-3Al-1Zn 合金组织和力学性能的影响
[J] . 特种铸造及有色合金,2023,43(7) :931-936.
[23] 马鸿斌, 魏福安*, 孙领兄. 热处理对Mg-2Nd-xZn合金耐腐蚀性能的影响[J].材料热处理学报,
2023, 44(05):76-85.
[24] 周世豪,魏福安*,马鸿斌. 等Mg-6Sn-3Al-1Zn 合金热压缩行为研究[J]. 特种铸造及有色合金,
2023, 43(11):1571-1575.
[25] 魏福安, 喇培清, 金培鹏. 轧制变形对高强高塑纳米结构珠光体1020钢的影响[J]. 热加工工艺,
2018, 047(011):1-6.
[26] 王金辉, 时博, 魏福安*,等. 高拉伸力学性能微纳结构316L不锈钢的制备[J]. 热加工工艺,
2018, 47(19):66-71.
[27] 魏福安, 李戬, 王金辉. 改革现有实验教学方法 提升学生创新实践能力[J]. 教育教学论坛,
2018(29):263-264.
[28] 王金辉, 王凡奇, 回佳琦, 魏福安*, 金培鹏等. ND+Mg2B205W/ZK60复合材料尺寸稳定性研究
[J]. 铸造技术, 2018, 39(7):1408-1411.
[29] 申光, 魏福安, 喇培清*, 孟倩, 王鸿鼎, 师婷, 马付良. 退火时间对微纳结构316L不锈钢组织和力学性
能的影响[J]. 金属热处理., 41(2016):122-126.
[30] 申光, 魏福安, 喇培清*, 王鸿鼎, 师婷. 退火温度对微纳结构304不锈钢微观组织和力学性能的影响
[J]. 热加工工艺. 20(2016):196-199.
[31] 时博, 王金辉, 魏福安. 金属玻璃自由体积理论的研究概述[J].材料导报, 33(2019):1221-1226.
[32] 师婷, 喇培清*, 魏福安, 王鸿鼎, 魏玉鹏, 卢学峰. Cr含量对退火态纳米晶Fe3Al材料晶粒尺寸和力学
性能的影响[J]. 粉末冶金材料科学与工程. 18 (2013) 846-850.
[34] 马家轩、韦琪、魏福安、乐泰和、王金辉、金培鹏. Mg-3Al-1Zn-xSn镁合金的温度阻尼特性[J].
特种铸造及有色合金, 40(2020):1405-1410.