个人信息
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个人简介
Personal Profile
教育背景
2014.9-2018.7,西安建筑科技大学,金属材料工程,学士
2018.9-2021.7,西安建筑科技大学,材料加工工程,硕士
2021.9-2025.7,西安建筑科技大学,材料加工工程,博士
工作经历
2025.10-至今,西安建筑科技大学,冶金工程学院,讲师/博士后
主要从事金属材料制备与加工理论及技术研究。主持校级项目1项,参与军委科技委173计划重点基金、国家重点研发计划课题、陕西省杰出青年科学基金、国家自然科学基金面上项目、国家重点研发项目子课题、陕西省秦创原“科学家+工程师”队伍项目、陕西省工业攻关项目、西安市工业应用技术研发项目、陕西省科学研究计划项目等10余项。
主要从事金属材料制备与加工理论及技术研究。主持校级项目1项,参与军委科技委173计划重点基金、国家重点研发计划课题、陕西省杰出青年科学基金、国家自然科学基金面上项目、国家重点研发项目子课题、陕西省秦创原“科学家+工程师”队伍项目、陕西省工业攻关项目、西安市工业应用技术研发项目、陕西省科学研究计划项目等10余项。
主要荣誉/获奖情况
1. 获2024年度中国有色金属工业科学技术进步一等奖,省部级;
2. 获2024年陕西省高等学校科学技术成果特等奖,厅局级;
3. 获2023年全国首届赵天从冶金教育奖,国家级;
4. 获第四届国际有色金属新材料大会新材料优秀青年,省部级;
5. 获2023年西安建筑科技大学自然科学一等奖,校级;
发表学术论文50余篇,其中SCI收录40余篇,申请国家发明专利20余件。
近年来主要代表性论文如下(*代表通讯作者,#代表共同一作):
[1] Han Peng, Wang Wen*, Deng Jingyu, Qiao Ke, Zhou Kai, Lin Jia, ZhangYuye, Qiang Fengming, Wang Kuaishe*. Achieving excellent superplasticity andpredicting the elongations in ultrafine-grained Ti-4.5Al-3V-2Mo-2Fe titaniumalloy prepared by friction stir processing[J]. Journal of Materials ProcessingTechnology, 2025, 336: 118701.
[2] Han Peng#, Ni Lijin#,Wang Wen*, Zhou Kai, Yang Hubin, Lin Jia, Qiao Ke, Qiang Fengming, Cai Jun, WangQingjuan, Wang Kuaishe*. Superplastic deformation behaviors of fine-grainedTi-15V-3Cr-3Al-3Sn alloy prepared via ultra-low heat input friction stirprocessing[J]. Materials Characterization, 2024, 215: 114229.
[3] Han Peng, Wang Wen*, LiuZhihao, Zhang Ting, Liu Qiang, Guan Xiaohu, Qiao Ke, Ye Dongming, Cai Jun, XieYingchun*, Wang Kuaishe. Modification of cold-sprayed high-entropy alloyparticles reinforced aluminum matrix composites via friction stirprocessing[J]. Journal of Alloys and Compounds, 2022, 907: 164426.
[4] Han Peng#, Chen shuaijun#, Wang Kuaishe, Gao Feng, Liu Jiang, Yan Baohong, Ma Qianzhi, QiangFengming, Qiao Ke*, Wang Wen*. Large-area AA6061 alloy sheets prepared viamulti-pass particles-based additive friction stir deposition[J]. Metallurgical and MaterialsTransactions B, 2025.
[5] Han Peng, Cai Jun, Qiao Ke, Qiang Fengming, Wang Wen*, Wang Kuaishe*. High strainrate superplasticity in ultrafine-grained Ti-4.5Al–3V–2Mo–2Fe alloy[J]. Journal of Materials Research andTechnology, 2025,36: 9257-9561.
[6] Han Peng, Wang Wen*, Cai Jun*, Lin Jia, Yang Hubin, Ma Qianzhi, GaoFeng, Qiao Ke, Qiang Fengming, Wang Kuaishe. Excellent superplasticity forlamellar microstructure in nugget of a double-side friction stir weldedTi-4.5Al-3V-2Mo-2Fe alloy joint[J].Acta Metallurgica Sinica (English Letters), 2026.
[7] Han Peng#, Lin Jia#,Wang Wen*, Liu Zhihao, Xiang Yating, Zhang Ting, Liu Qiang, Guan Xiaohu, QiaoKe, Xie Yingchun*, Wang Kuaishe. Friction stir processing of cold-sprayedhigh-entropy alloy particles reinforced aluminum matrix composites: Corrosionand wear properties[J]. Metals and Materials International, 2023, 29: 845-860.
[8] HanPeng, WangKuaishe*, Wang Wen*, Ni Lijin, Lin Jia, Xiang Yating, Liu Qiang, Qiao Ke, QiangFengming, Cai Jun. Microstructure evolution and mechanical properties ofTi-15-3 alloy joint fabricated by submerged friction stir welding[J]. Archivesof Civil and Mechanical Engineering, 2024: 24-54.
[9] Wang Wen*, #,Han Peng#, WangYinghui, Zhang Ting, Peng Pai, Qiao Ke, Wang Zhi, Liu Zhihao, Wang Kuaishe*.High-performance bulk pure Al prepared through cold spray-friction stir processingcomposite additive manufacturing[J].Journal of Materials Research and Technology, 2020, 9(3): 9073-9079.
[10] LiuZhihao#,Han Peng#, Wang Wen*, Guan Xiaohu, Wang Zhi, FangYuan, Qiao Ke, Ye Dongming, Cai Jun, Xie Yingchun*. Wang Kuaishe. Microstructure,mechanical properties, and corrosion behavior of 6061Al prepared through coldspray-friction stir processing composite additive manufacturing[J]. Transactions of Nonferrous Metals Society of China,2022.
[11] Huo Keyue#, Han Peng#,Wang Wen*,Liu Yi, Zhang Xu, Zheng Pengfei, Qiao Ke*, Qiang Fengming, Wang Qingjuan, WangKuaishe. Role of intermetallic compounds in the fracture of double-sidedfriction stir welded titanium-steel clad plates[J]. Materials Characterization,2025, 221: 114757.

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