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李真
赞
的个人主页 http://shi.buaa.edu.cn/lizhen12/zh_CN/index.htm
硕士生导师
教师拼音名称:
lizhen
电子邮箱:
a68553726f4ebf050e7598da66c58d930397250ad4d996980c97163f502080b75b855b5bfdd9b40a88c5139cb8ea8c51f43465249ef6ddb1eddf1504544dcdf2c25cb23c244f99867813288d263eee65da4103aae6105b5093df5e35c1ec6031b5f88c7f3753a57638bb82c2dd552cd9f77eca83127a133130d45dad0e5b83d0
所在单位:
杭州国际创新研究院
性别:
男
在职信息:
在职
毕业院校:
北京航空航天大学
论文
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论文
[1]
.Study on the surface formation mechanism in scratching test with different ultrasonic vibration forms:Journal of Materials Processing Technology,2021
[2]
.Cutting force and specific energy for rotary ultrasonic drilling based on kinematics analysis of vibration effectiveness:Chinese Journal of Aeronautics,2022
[3]
.Ultrasonic-vibration-enhanced plasticity of an entropic alloy at room temperature:Acta Materialia,2022
[4]
.Rapid Forming of Nanowire Array on Polyvinylidene Fluoride Polymer Surfaces at Room Temperature by Ultrasonic Loading:Advanced Engineering Materials,2022
[5]
.An investigation on the wear and subsurface deformation mechanism of CoCrFeMnNi high entropy alloy at subzero temperature:Wear,2023
[6]
.Mechanical Response and Microstructure evolution of SiC particle-reinforced Al-MMCs under Ultrasonic Loading:Composites Part A: Applied Science and Manufacturing,2023
[7]
.On the deformation mechanism and dislocations evolution in monocrystalline silicon under ramp nanoscratching:Tribology International,2024
[8]
.Effect of SiC particle content on the mechanical behavior and deformation mechanism of SiCp/Al composite under high-frequency dynamic loading:Materials Science and Engineering: A,2024
[9]
.In-situ TEM investigation of dislocation healing and recrystallization in nanoscratched silicon at elevated temperatures up to 800°C:Journal of Materials Research and Technology,2024
[10]
.Wear mechanism and subsurface microstructure of high entropy alloy reinforced with TiC nano-particles fabricated by additive manufacturing:Wear,2025
共10条 1/1
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