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姚国凤
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( 教授 )
赞
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的个人主页 https://teachers.jlu.edu.cn/yaoguofeng/zh_CN/index.htm
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教授
主要任职 :
副院长
其他任职 :
吉林省力学学会理事长
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性别 :
男
学历 :
博士研究生毕业
学位 :
博士
在职信息 :
在职
所在单位 :
机械与航空航天工程学院
学科 :
固体力学
办公地点 :
吉林大学机械学院
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论文成果
[1] Adaptive feature mode decomposition: a fault-oriented vibration signal decomposition method for identification of multiple localized faults in rotating machinery, Nonlinear Dynamics(2023)
[2] Characteristic analysis of bionic-induced structures with negative stiffness inspired by the growth and deformation differences of branches, Thin-Walled Structures(2024)
[3] Novel femur-like multimodal ultrahigh strength structure with superb freedom based on the improvement strategy of curvature fabricated by additive manufacturing, Materials &Design(2023)
[4] Assembling feather-like reentrant structures with multiple mechanical properties fabricated by laser powder bed fusion, Composite Structures(2023)
[5] Study on mechanical properties of polyurethane-enhanced triply periodic minimal composite structures inspired by rachis microstructure, Composites Science and Technology(2023)
[6] An Adaptive Subinterval Finite Element Method Based on Dynamic Sensitivity Analysis for Structures with Uncertain-but-Bounded Parameters, Applied Sciences-Basel(2023)
[7] Design and Analysis of a New Semiactive Hydraulic Mount for a Wide-Range Tunable Damping without Magneto-Rheological/Electric-Rheological Fluid, Applied Sciences-Basel(2023)
[8] Study on Beat Vibration of a High Temperature Superconducting EDS Maglev Vehicle at Low Speed, Applied Sciences-Basel(2023)
[9] A New Pre-Stretching Method to Increase Critical Flutter Dynamic Pressure of Heated Panel in Supersonic Airflow, Mathematics(2022)
[10] Study on quasi-static mechanical properties of novel reentrant structures with multiple energy dissipation, Thin-Walled Structures(2022)
[11] Highly Flexible and Conductive Electrodes through Combining Honeycomb and Butterfly Pattern Bio-Inspired Structure for ECG Signal Recording, Advanced Materials Interfaces(2022)
[12] A novel flexible electrode with the inner-concave honeycomb negative Poisson's ratio structure, Mechanics of Advanced Materials and Structures(2022)
[13] Screen-printed highly mechanical and conductive flexible electrodes based on chiral structure with negative Poisson’s ratio, Sensors and Actuators B-Chemical(2022)
[14] Mechanical Characteristics Analysis of 3D-printing Novel Chiral Honeycomb Array Structures Based on Functional Principle and Constitutive Relationship, Journal of Bionic Engineering(2023)
[15] Study on mechanical properties of lattice structures strengthened by synergistic hierarchical arrangement, Composite Structures(2023)
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