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彭亚伟
阅读次数:     发布时间:2021-12-20

彭亚伟(Yawei Peng

E-mail: pengyw@njtech.edu.cn

职称:副教授、硕士生导师

职务:机械学院教师第二党支部书记

地址:南京市江北新区南京工业大学江浦校区崇德楼E503

学术主页:ResearchGate: https://www.researchgate.net/profile/Yawei-Peng

GoogleScholar: https://scholar.google.com/citations?user=6WA8B1EAAAAJ&hl=en

所在团队:高温装备技术及CAE创新团队

v 工作经历

² 2021.04 -至今,南京工业大学,副教授

² 2019.06 - 2020.10Technical University of DenmarkDTU),博士后

² 2019.01 - 2021.03,南京工业大学,师资博士后

v 教育经历

² 2018.01 - 2019.01Technical University of Denmark,联培博士(国家留学基金委资助)

² 2013.09 - 2018.12,南京工业大学,化工过程机械,工学博士

² 2009.09 - 2013.06,南京工业大学,过程装备与控制工程,工学学士

v 研究方向

² 机械关键部件表面改性调控与寿命提升技术

² 选区激光熔化增材制造残余应力调控及预测

² 严苛环境下金属材料微动损伤机理与寿命预测

v 个人简介

长期致力于过程装备先进制造技术、金属材料使役行为和表面工程研究,研究成果服务于化工、能源等领域关键装备核心零部件对长寿命和高可靠性运行的需求。担任中国机械工程学会表面工程分会表面改性学组委员,中国结构完整性联盟《结构完整性前沿进展》青年编委,国际学术期刊Coatings客座编辑。先后主持国家自然科学基金青年项目、国家重点研发计划子课题、“航空发动机与重型燃气轮机国家科技重大专项”—重型燃气轮专项重大项目课题、江苏省高校自然科学研究重大项目等。目前发表学术论文30余篇,其中以第一作者/通讯作者发表SCI检索论文18篇。与丹麦科技大学(DTU)有着深入的国际学术合作关系,指导多名学生获批国家留学基金委(CSC)资助,赴丹麦等国进行联合培养。联合指导学生获江苏省优秀博士论文,国际会议论文竞赛一等奖、二等奖多次。

v 代表性论著(部分)

[1] Yajian Feng, Haifan Wang, Zhenxu Zhao, Donghui Chen, Yawei Peng*, Jianming Gong*, Marcel AJ Somers. Response of laser power bed fusion manufactured austenitic stainless steel towards combined heat treatment and low-temperature thermochemical surface strengthening. Journal of Materials Research and Technology, 2024, 33: 1558-1568.

[2] Yajian Feng, Han Duan, Zhenxu Zhao, Zhe Liu, Yawei Peng*, Jianming Gong*, Marcel AJ Somers. Anisotropic response of additively manufactured 316 L stainless steel towards low-temperature gaseous carburization. Surface and Coatings Technology, 2023, 470: 129874.

[3] Yawei Peng*, Han Duan, Yajian Feng, Jianming Gong, Marcel AJ Somers. Surface hardening of Al0. 1CoCrFeNi and Al0. 5CoCrFeNi high-entropy alloys by low-temperature gaseous carburization. Intermetallics, 2023, 160: 107943.

[4] Zhe Liu, Shuaihui Wang, Yajian Feng, Xiaowei Wang, Yawei Peng*, Jianming Gong*. Exploration on the fatigue behavior of low-temperature carburized 316L austenitic stainless steel at elevated temperature. Materials Science and Engineering A, 2022, 850: 143562.

[5] Zhe Liu, Shuaihui Wang, Yajian Feng, Yawei Peng*, Jianming Gong*, Marcel A.J. Somers. Residual stress relaxation in the carburized case of austenitic stainless steel under alternating loading. International Journal of Fatigue, 2022, 159: 106837.

[6] Yawei Peng*, Jianming Gong, Thomas L. Christiansen, Marcel A.J. Somers*. Surface modification of CoCrFeNi high entropy alloy by low-temperature gaseous carburization. Materials Letters, 2021, 283: 128896.

[7] Zhe Liu, Song Zhang, Shuaihui Wang, Yajian Feng, Yawei Peng*, Jianming Gong*, Marcel A.J. Somers. Redistribution of carbon and residual stress in low-temperature gaseous carburized austenitic stainless steel during thermal and mechanical loading. Surface & Coatings Technology, 2021, 426: 127809.

[8] Yawei Peng*, Zhe Liu, Chaoming Chen, Jianming Gong, Marcel A.J. Somers. Effect of low-temperature surface hardening by carburization on the fatigue behavior of AISI 316L austenitic stainless steel. Materials Science and Engineering A, 2020, 769: 138524.

[9] Zhe Liu, Song Zhang, Shuaihui Wang, Yawei Peng*, Jianming Gong*, Marcel A.J. Somers. On the fatigue behavior of low-temperature gaseous carburized 316L austenitic stainless steel: Experimental analysis and predictive approach. Materials Science and Engineering A, 2020, 793139651.

[10] Yawei Peng, Zhe Liu, Yong Jiang, Bo Wang, Jianming Gong*, Marcel A.J. Somers. Experimental and numerical analysis of residual stress in carbon-stabilized expanded austenite. Scripta Materialia, 2018, 157: 106-109.


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