王东曜

发布时间:2025-09-02作者:设置



王东曜

学位:工学博士

职称:讲师

毕业院校:中南大学

办公地点:西三楼 211

联系方式:1828390710@qq.com


个人简介

主要从事铝合金高性能固态焊接及复杂薄壁构件形性一体化制造等方面的研究工作,发表学术论文10余篇、授权专利4件。


研究方向

大型航空航天用复杂薄壁构件的形性协同制造蠕变时效成形)

高性能固态焊接设备、工艺及其工装的设计与优化(搅拌摩擦焊)


教育背景

2020.09-2025.06,中南大学,机械工程(博士)

2017.09-2020.06,中南大学,机械工程(硕士)

2013.09-2017.06,郑州轻工业大学,机械设计制造及其自动化(学士)


论文专著与专利

代表性论文:

[1] Wang Dongyao, Zhan Lihua, Liu Chunhui. Stress-level dependency of creep ageing behavior for the nugget zone in a friction stir welded Al–Cu–Li alloy [J]. Materials Science and Engineering A, 2023,881:145383. (SCI, Q1, IF:6.4,)

[2] Wang Dongyao, Zhan Lihua, Liu Chunhui. Study on creep ageing behavior of the friction stir welded Al-Li alloy joints under different stresses [J]. Materials Characterization,2024, 210: 113763. (SCI, Q1, IF:4.8)

[3] Wang Dongyao, Zhan Lihua, Liu Chunhui, et al.Effect of temperature on creep aging behavior of the nugget zone of AA2195 Al-Li alloy produced by friction stir welding [J]. Materials Characterization, 2024, 217: 114408. (SCI, Q1, IF:4.8)

[4] Wang Dongyao, Zhan Lihua, Zhong Jue, et al. Stress-level dependency of creep ageing behavior for friction stir welded Al-Cu alloy [J]. Journal of Central South University, 2022,29(09):3030-3053. (SCI, Q1, IF:4.4)

[5] Wang Dongyao, Zhan Lihua, Zeng Quanqing, et al. Study of desirable precipitate-strengthening effects on friction-stir welded joints of third-generation Al-Cu-Li alloys [J]. Philosophical Magazine Letters, 2021,101(12):474-483. (SCI, Q3, IF:1.2)

[6] Wang Dongyao, Zeng Quanqing, He Diqiu, et al. Inhomogeneous gradient microstructure and mechanical properties of thick copper plate via friction stir welding [J]. Journal of Materials Engineering and Performance, 2020,101(12): 7853-7862. (SCI, Q3, IF:2.3)

[7] 贺地求,王东曜,胡雷等.2198-T3S铝锂合金组合工艺搅拌摩擦焊接头组织性能分析[J].中国机械工程,2020,31(05):610-615. (EI)


代表性专利:

[1] 国家发明专利,一种对厚板铜铝异种金属背面进行移动式加热的搅拌摩擦焊工艺方法[P]. ZL201810755052.8, 2021. (第一发明人)

[2] 实用新型专利,一种用于铜铝异种金属搅拌摩擦焊接的激光辅助加热装置[P]. ZL201821397917.X, 2019. (第一发明人)

[3] 实用新型专利,一种厚板铜铝异种金属搅拌摩擦焊接背面加热装置[P]. ZL201821091675.1, 2019. (第一发明人)



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