程德俊
讲师
机械工程学院
个人邮箱:
201800000059@just.edu.cn
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6号楼548室
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个人简介
程德俊,男,工学博士。博士阶段主要从事高档数控机床滚动功能部件摩擦学非线性理论及非均匀重叠磨损理论研究,博后及现阶段主要从事高端装备智能运维理论及应用技术研究工作。近五年主持国家自然基金、省部级、JG课题多项。独立出版英文学术专著1本;在Knowledge-based system,Reliability Engineering and System Safety,Mechanism and Machine Theory, Advanced Eng. Informatics, Measurement, Tribol. Trans,Int. J. Adv. Manuf. Technol.,J. Mech. Sci. Technol.,Int. J. Precis. Eng. Manuf.等国内外同行认可的高水平期刊上发表ESCI论文15篇(其中,中科院一区TOP论文5篇)。担任Knowledge-based system,Reliability Engineering and System Safety,Advanced Engineering Informatics,Mechanism and machine theory等权威期刊的审稿人.*每年招收1-2名研究生,每月科研补助1000-2000元。微信
研究方向
(1)高端装备协同跨域融合感知与运维决策(2)低辨识度环境下目标检测与识别(3)智能传动与驱动系统振动及摩擦磨损行为预测
教育经历
2020-12至2022-12,西北工业大学,动力与能源学院,博后2017-09至2018-03, 国立庆尚大学,机械与航空工程,博后2013-09至2017-08, 国立庆尚大学,机械与航空工程,博士2011-09至2013-08, 国立庆尚大学,机械与航空工程,硕士
课程教学
研究生课程:智能运维与健康管理Modern CNC Manufacturing Technology本科生课程:UG CAMAdvanced Manufacturing TechnologyComputer Numerical Control数控技术
科研项目
专利成果
科研团队
获奖动态
教学随笔
论文著作
1
Analysis of friction fluctuations mechanism of a preloaded roller linear motion guide based on a new 5-DOF dynamic stiff...
2
Multi-feature spaces cross adaption transfer learning-based bearings piece-wise remaining useful life prediction under u...
3
Deep learning-based intelligent multilevel predictive maintenance framework considering comprehensive cost
4
Deep transfer learning-based hierarchical adaptive remaining useful life prediction of bearings considering the correlat...
5
Modeling of Time‑Varying Surface Roughness Considering Wear Overlap Per Tooth in Ball End Finish Milling
6
Analysis of non-uniform load distribution and stiffness for a preloaded roller linear motion guide
7
A Digital Twin‑Driven Approach for On‑line Controlling Quality of Marine Diesel Engine Critical Parts
8
Minimization of Surface Roughness and Machining Deformation in Milling of Al Alloy Thin‑Walled Parts
9
Investigation of the Frictional Behavior in a Roller Linear Motion Guide under Mixed EHL
10
Friction Characteristic and Temperature Distribution for the Linear Motion Guide of Machine Tool
11
A new approach for predicting wear overlap geometry in ball end finish milling |