获奖: 1.“新型节能专利产品—高磁能大吨位系列稀土起重永磁铁研究与开发”2013年获得吉林省科技进步二等奖,第1名。 2.《稀土永磁起重技术发明及应用》2010获得吉林省科技进步三等奖,第1名。 3.《外圆纵向智能磨削系统的研究》2006年获得吉林省科技进步三等奖,第1名。 专利: 国家发明专利:《用于吊运废钢铁的起重永磁铁》(ZL02126633.6),第1名。 论文: 1.Intelligent Optimization Control of Workpiece Deformation for Traverse Grinding——Key Engineering Materials. 2004,Vols.259-260 (第一作者) (SCI检索) 2.Study of Intelligent Prediction and Control of Workpiece Size in Traverse Grinding.——Key Engineering Materials. 2005, Volume 304 until 305 (第一作者) (SCI检索)。 3.HUMAN-MACHINE INTELLIGENT CONTROL SYSTEM FOR GRINDING——-机械工程学报(英文版)2004 (第一作者) (EI检索) 4.磨削质量智能优化控制策略研究——中国机械工程,2003.22(第一作者)(EI检索) 5.细长轴磨削变形的变速优化智能预测控制研究——中国机械工程,2006.01(第一作者) (EI检索) 6.Study of Intelligent Prediction Control System in External Cylindrical Grinding -——the 6th World Congress on Intelligent Control Automation (WCICA06),2006,6,21-23,(第一作者)(EI检索) 7.Study of Intelligent prediction Control of Surface Roughness in grinding——Key Engineering Materials. 2007. Vol.329。(第一作者) (EI检索) 8.Neural Fuzzy Prediction Control of an Industrial Grinding Process-2nd International Conference on Bio-inspired Computing: Theories and Applications (BIC-TA2007) pp.763-766,2007(第一作者)(EI检索) 9.Dynamic Intelligent Prediction Control in Slender cylindrical Grinding-Key Engineering Materials, Vols.359-360(2008),pp 189-193(第一作者)(EI检索) 10.Design of Lifting Permanent Magnet Based on Neural Network ---2009 IEEE International Conference on Automation and Logistics,2009,8(第一作者)(EI检索) 11.Size prediction control modeling in cylindrical grinding -Advanced Materials Research(Volumes 154 - 155),977,2010,pp: 977-980(EI检索,第一作者) 12.An Intelligent Supervision System for Workpiece Size in Cylindrical Grinding - 2010 Second Global Congress on Intelligent Systems(GCIS),2010.12.16-17 (EI检索,第一作者) 13.Intelligent Dynamic Roughness Identification Model in Grinding_《Applied Mechanics and Materials》(Vols. 48-49 (2011) pp 621-624 )(EI检索,第一作者) 14.Novel and Saving Energy Lifting Permanent Magnet Design-《Advanced Materials Research》Vols. 201-203 (2011) pp 2846-2849(EI检索,第一作者) 15.Surface Roughness Prediction Model of Cylinder Grinding——Applied Mechanics and Materials, Volumes 157 – 158(2012)(EI检索,第一作者) 16.Intelligent Optimization Design of Rare Earth Lifting Permanent Magnet——《Advanced Materials Research》Vols. 538-541 (2012) pp 3066-3069(EI检索,第一作者) 17.Energy-saving Rare Earth Lifting Permanent Magnet——《Advanced Materials Research》Vols. 569 (2012) pp 391-394(EI检索,第一作者) 18.FEM-Based Lifting Permanent Magnetic Chuck Design——《Advanced Materials Research》Vols.655-657(2013)PP355-358(EI检索,第一作者) 19.Lifting Chuck Design Based on Fuzzy Expert System——《Advanced Materials Research》Vols.662(2013)PP653-656(第一作者)(EI检索) 20.Driving System Design of Lifting Permanent Magnet——《Advanced Materials Research》Vols.765-767(2013)PP125-128(EI检索,第一作者) 21.表面粗糙度模糊神经网络在线辨识模型——机械工程学报2007.3 (EI检索,第二作者) |