一、学术论文
共发表学术论文100多篇,其中作为第一作者、通讯作者发表的30篇代表作如下:
1、Ding Yanchun, Shi Guangfeng*, Zhang Hua. Research on the plastic flow characteristics of metal material in mechanical scratching[J]. International Journal of Advanced Manufacturing Technology, 2021 (SCI、EI检索)
2、Yanchun Ding, Guangfeng Shi*, Guoquan Shi. Study on the Critical Negative Rake Angle of the Negative Rake Angle Tool Based on the Stagnant Characteristics in Micro-cutting [J]. International Journal of Advanced Manufacturing Technology, 2020,107:2055-2064 (SCI、EI检索)
3、Guangfeng Shi, Wang Fu, Shukun Wang, et al.. PLSR-based surface damaged layer depth determination of sawed natural diamond[J]. Materials Research Express, 2020,6(12) : 125630 (SCI、EI检索)
4、石广丰,霍明杰,王子涛.固着液滴的流固耦合模态仿真分析[J].华南理工大学学报(自然科学版),2020,48(02):137-142+150 (EI检索)
5、Guangfeng Shi, Fengjie Guo, Hua Zhang, Xue Wang, Dawei Yu and Guoquan Shi. The Influence of Planar Array Charge-coupled Device (CCD) Staggered Imaging on the Detection Precision of the Tool Setting Gap when Using Laser Diffraction[J]. Lasers in Engineering, 2020,45(4-6):337-351 (SCI检索)
6、Xiaohan Liu,Guangfeng Shi*. Residual stress detection of welded parts based on excitation vibration response[J]. International Journal of Advanced Robotic Systems. 2020,2:1-11 (SCI、EI检索)
7、Chaochao Shi, Guangfeng Shi*, Guoquan Shi, Haichao Li. Simulation and Analysis of Mechanical Behavior of Groove-Shaped Over-Squeezing During Mechanical Ruling[J]. International Journal of Precision Engineering and Manufacturing, 2019 (SCI、EI检索)
8、Yanchun Ding, Guangfeng Shi*, et al.. Analysis of critical negative rake angle and friction characteristics in orthogonal cutting of AL1060 and T2[J]. Science progress, 2019 (SCI、EI检索)
9、Guangfeng Shi, Yushi Zhang, Guoquan Shi, Hua Zhang. Analysis of the influence of installation tilt error on the tool setting accuracy by laser diffraction[J]. Applied Optics, 2018 (SCI、EI检索)
10、丁艳春,石广丰*,史国权. 机械刻划过程中的材料滞留特征分析[J].机械工程学报,2018,54(19) (EI检索)
11、Guangfeng Shi, Hua Zhang. Effects of polycrystalline diamond tool rake angle on turning process of high silicon aluminum alloy[J]. U.P.B. Sci. Bull., Series D., 2018,80(3) (EI检索)
12、Guangfeng Shi, Guizhan Zhu. Finite Element Simulation Analysis of Diamond Bi-directional Coining Neck Hole Forming Process[C]. IOP Conf. Series. 2018 (EI、ISTP检索)
13、Guangfeng Shi, Dongdong Han. Brittle Fracture Effect on Dislocation Density of Single Crystal Germanium During Turning[C]. IEEE, 2018 (EI、ISTP检索)
14、Dongjie Chen, Guangfeng Shi*, Guoquan Shi, Zhe Xu, Keke Zhu. Performance of the oxide film of pure aluminium processed by WEDM-HS[J]. Micro and Nano Letters, 2017 (SCI、EI检索)
15、Dongjie Chen,Guangfeng Shi*, Guoquan Shi, Zhe Xu, Keke Zhu. Experimental study on the oxide film of 1060 aluminum by using WEDMHS[C]. IEEE, 2017 (EI、ISTP检索)
16、Guangfeng Shi, Yuanzhe Xu, Guoquan Shi.Vibration analysis of an optical fast-focusing device with liquid droplet[C].IEEE, 2015 (EI、ISTP检索)
17、Guangfeng Shi, Jing Liu, Guoquan Shi. Laser diffraction application on detection technology of online tool setting [C].IEEE, 2015 (EI、ISTP检索)
18、石广丰,吕杨杨,史国权,吉日嘎兰图,肖为. 光栅机械刻划摩擦型颤振机理[J].光学精密工程,2014,22(11):3061-3066 (EI检索)
19、Guangfeng Shi ,Bin Yang, Guoquan Shi , Jing Liu. Computer modal analysis of the two-dimensional precision turntable[C],Applied Mechanics and Materials.2014,599-601: 1261-1264 (EI、ISTP检索)
20、Guangfeng Shi, Bin Yang, Yuanzhe Xu, and Guoquan Shi. Modal analysis of liquid-solid coupling liquid lens[C]. Proc. of SPIE, 2014, 9298: 92980P 1-7 (EI、ISTP检索)
21、Guangfeng Shi, Yudong Zhou, Xiaoxu Zhang. A new test device for mechanical ruling process of aluminum grating[C]. Applied Mechanics and Materials. Vols. 644-650 (2014) pp 916-919 (EI、ISTP检索)
22、Shi Guangfeng, Xiao Wei, Shi Guoquan. Calibrating the Precision of a Contact Sensor for Displacement with a Piezo Nanopositioning Stage[C]. Applied Mechanics and Materials. 2013, 433-435:221-224 (EI、ISTP检索)
23、Shi Guangfeng,Zhang Peng. Electrostatic-structure Couple Field Analysis in Electrode Plate Design of Electrostatic Membrane Reflector with Composite Properties of Membrane Material[C]. Applied Mechanics and Materials. 2013,vol.252. (EI、ISTP检索)
24、Shi Guangfeng, Zhang Peng. A Prototype of Electrostatic Membrane Reflector with Composite Properties of Membrane Material [C]. Applied Mechanics and Materials. 2013,vol.252. (EI、ISTP检索)
25、Shi Guangfeng, Shi Guoquan, Song Linsen. Reverse Design of The Roof Diamond Tool for Ruling Echelle Grating [C], Key Engineering Materials, vol.552,pp.180-185,2013 (EI、ISTP检索)
26、Shi Guangfeng, Shi Guoquan, Song Linsen. Determination of Stress-strain constitutive Relation of Echelle Grating Al Film by Nanoindentation Test and Simulation [C],Advanced Materials Research,Vol.625,pp.312-317,2013 (EI、ISTP检索)
27、石广丰,史国权,徐志伟等. 中阶梯光栅铝膜的大压深纳米压痕实验[J].机械工程学报, 2012,40(20):39-43(EI检索)
28、Shi Guangfeng, Shi Guoquan, Song Linsen. Modeling, Simulation and Analysis of Mechanical Ruling echelle grating [C], Advanced Material Research,vol.425,pp.281-284, 2012 (EI、ISTP检索)
29、Shi Guangfeng, Zhong Xing, Jin Guang, Zhang Peng. Configuring an electrostatic membrane reflector with potentials exerted on distributed electrodes[C]. IEEE, ICMA. 2009,8:5089-5093 (EI、ISTP检索)
30、石广丰,金光,刘春雨,张鹏. 薄膜反射镜的成形控制[J]. 光学精密工程,2009,17(4):732-737 (EI检索)
二、专利
1、石广丰(1/3),贯穿微型腔液滴的有限元流固耦合建模及其模态分析方法,国家发明,已授权,ZL201610992315.8;
2、石广丰(1/7),激光辅助超精密飞切单晶锗二维光学转鼓的方法,国家发明,已授权,ZL 201710311521.2;
3、石广丰(1/5),一种激光衍射对刀检测仪,国家发明,已授权,ZL201610997169.8;
4、石广丰(1/4),一种二维转鼓的检测装置,国家发明,已授权,ZL201610808221.0;
5、石广丰(1/4),一种降低金刚石压头纳米印压单侧成孔圆度误差的方法,国家发明,已授权,ZL201610590767.3;
6、石广丰(1/5),一种飞切单晶锗二维六面转鼓第一初始侧表面的确定方法,国家发明,已授权,ZL201610548387.3;
7、石广丰(1/5),金刚石圆锥压头双向纳米印压缩颈孔成形方法及其工具,国家发明,已授权,ZL201610548389.2
8、石广丰(1/4),激光原位辅助机械刻划硬脆材料的装置及方法,国家发明,已授权,ZL201610046614.2;
9、石广丰(1/4),激光原位辅助透明金刚石压头印压成孔装置及方法,国家发明,已授权,ZL201610019585.0;
10、石广丰(1/5),激光透光栅毛坯玻璃基底辅助机械刻划装置及方法,国家发明,已授权,ZL201610019584.6;
11、石广丰(1/4),基于压痕预溶池效应的大深径比微孔复合加工装置及方法,国家发明,已授权,ZL201610019583.1;
12、石广丰(1/3),一种确定金刚石尖劈刀机械刻划安装角度参数的方法,国家发明,已授权,ZL201610548386.9 ;
13、石广丰(1/4),激光衍射在线对刀检刀系统及方法,国家发明,已授权,ZL201510387203.5 ;
14、石广丰(1/4),高速变焦摄像对曲面轮廓线的自适应检测系统及方法,国家发明,已授权,ZL201510190691.0;
15、石广丰(1/4),一种新型多功能机械刻划刀架,国家发明,已授权,ZL201510076163.2;
16、石广丰(1/7),一种采用主、副刀刃进行机械刻划衍射光栅的方法,国家发明,已授权,ZL201410384122.5;
17、石广丰(1/8),光栅机械刻划工艺试验装置,国家发明,已授权,ZL201310305382.4;
18、石广丰(1/3),单晶晶面偏角及偏向测算方法,国家发明,已授权,ZL201310637248.4;
19、石广丰(3/8),金字塔型微结构飞刀铣削和划切复合机床及加工方法,国家发明,已授权,ZL201810162577.0;
20、石广丰(1/3),一种柔塑性体的折弯及并联包装机构,实用新型,已授权,ZL201720244405.9 ;
21、石广丰(1/5),一种激光衍射对刀检测仪,实用新型,已授权,ZL201621219368.8
22、石广丰(1/5),一种金属薄片的金刚石纳米印压单侧超微孔成形装置,实用新型,已授权,ZL201410725565.6
23、石广丰(1/8),光栅机械刻划工艺试验装置,实用新型,已授权,ZL201320432781.2;
24、石广丰(3/7),超精密切削机床飞刀盘径向调刀装置,实用新型,已授权,ZL201320773692.4;
25、石广丰(5/5),硬齿面插齿刀锥基波形凸曲前刀面磨削加工装置,实用新型,已授权,ZL201320773692.4;
26、石广丰(1/3),金刚石印压金属片微孔成形及孔径尺寸监控与检测软件,计算机软件著作权,已授权,2019SR0263576;
27、石广丰(1/5),金刚石三维形貌检测和可视化表征系统,计算机软件著作权,已授权,2019SR1407322;
28、石广丰(1/5),金刚石加工最大制约尺寸计算系统,计算机软件著作权,已授权,2019SR1402990;
29、石广丰(1/5),基于PBC最优匹配的金刚石工具切割工艺规划系统,计算机软件著作权,已授权,2020SR0051039;
30、石广丰(1/5),面向工具应用的金刚石三维形貌表征及切割工艺规划系统,计算机软件著作权,已授权,2020SR0053686.
三、获奖
1、石广丰(1/10),吉林省科技进步二等奖,吉林省科学技术奖励委员会,2020;
2、石广丰(2/3),ICFPMCE2019国际会议最优论文奖,STAM、赛克思液压,2019;
3、石广丰(2/2),指导大学生机械产品数字化设计大赛获国家二等奖,教育部高等学校机械学科教学指导委员会,2019;
4、石广丰(1/10),吉林省科技进步二等奖,吉林省科学技术奖励委员会,2018;
5、石广丰(2/2),指导大学生机械产品数字化设计大赛获国家一等奖,教育部高等学校机械学科教学指导委员会,2018;
6、石广丰(1/4),第四届全国高校自制实验教学仪器设备评选活动二等奖,教育部高等学校实验室建设指导委员会等,2016;
7、石广丰(1/2),永康市首届青年创业创新大赛二等奖,中共永康市委组织部等,2016;
8、石广丰(2/3),吉林省自然科学学术成果奖二等奖,吉林省自然科学学术成果奖励评审委员会,2015;
9、石广丰(3/3),关于航相机薄壁零件的金属成形工艺,吉林东光集团有限公司工艺创新大赛优秀奖,2010;
10、石广丰(1/2),“直面效率的挑战”有奖征文大赛优秀论文奖,瑞典Sandvik和中国刀协,2006。
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