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个人信息Personal Information
教授
博士生导师
硕士生导师
教师英文名称:Kun Li
教师拼音名称:likun
电子邮箱:
入职时间:2020-09-01
所在单位:机械与运载工程学院
职务:高性能智能增材制造实验室主任、高性能结构增材制造重庆市重点实验室常务副主任、绿色智能制造研究所副所长
学历:研究生(博士后)
办公地点:重庆市沙坪坝区大学城南路 重庆大学科学中心2号楼 高端装备机械传动全国重点实验室/机械与运载工程学院
性别:男
学位:博士学位
在职信息:在职
主要任职:国际ICALEO学会会士
其他任职:机械工程学会增材制造分会委员
毕业院校:清华大学
学科:机械制造及其自动化
材料加工工程
计算机软件与理论
- A 4D-Printed NiTi Alloy with Encoded Microstructures Evades the Cooling Capacity-Energy Efficiency Trade-Off in Elastocaloric Refrigeration:Materials Science and Engineering: R: Reports
- Achieving fine tailoring of elastocaloric properties of laser powder bed-fused NiTi alloy via laser beam manipulation:International Journal of Machine Tools and Manufacture
- A comparative study on WE43 magnesium alloy fabricated by laser powder bed fusion coupled with deep cryogenic treatment: Evolution in microstructure and mechanical properties:Additive Manufacturing
- Tensile creep mechanisms of laser powder bed fused WE43 alloy with heterogeneous microstructure: Evolution in dislocations and precipitates:Journal of Materials Science & Technology
- Design exploration of staggered hybrid minimal surface magnesium alloy bone scaffolds:International Journal of Mechanical Sciences
- Homogenization timing effect on microstructure and precipitation strengthening of 17–4PH stainless steel fabricated by laser powder bed fusion:Additive Manufacturing
- Elastocaloric effect of laser powder bed fused NiTi alloy with customizable hierarchical heterogeneous microstructure:Additive Manufacturing
- Unleashing the elastocaloric cooling potential of 3D-printed NiTi alloy with heterogeneous microstructures and Ni4Ti3 nanoparticles:Composites Part B: Engineering
- Superstrengthening effect of beyond-solid-solution laser powder bed fused WE43 magnesium alloy triggered by direct aging treatment:Additive Manufacturing
- Wire-arc additive manufacturing and post-heat treatment optimization on microstructure and mechanical properties of Grade 91 steel:Additive Manufacturing
- Multi-scale simulation of residual stress and deformation of large-size hollow parts fabricated by laser-based powder bed fusion:Thin-Walled Structures
- Tuning the functional properties by laser powder bed fusion with partitioned repetitive laser scanning: toward editable 4D printing of NiTi alloys:Journal of Manufacturing Processes
- The effects and utility of homogenization and thermodynamic modeling on microstructure and mechanical properties of SS316/IN718 functionally graded materials fabricated by laser-based directed energy deposition:Journal of Materials Processing Technology
- Hybrid post-processing effects of magnetic abrasive finishing and heat treatment on surface integrity and mechanical properties of additively manufactured Inconel 718 superalloys:Journal of Materials Science & Technology
- Insight into the cracking mechanism of super-elastic NiTi alloy fabricated by laser powder bed fusion:Virtual and Physical Prototyping
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