一、学术论文
1、Xu J, Qiu R, Lian Z, et al. Wear and corrosion resistance of electroforming layer after WEDM for 7075 aluminum alloy[J]. Materials Research Express, 2018, 5(6): 066502. (SCI收录)
2、Linshuai Zhang, Jinkai Xu*, Bingyan Chen, Huadong Yu, Zhongxu Lian. Microhardness and corrosion resistance behavior of Ti-6Al-4V Alloy-Colored Surface under WEDM-HS Process[J].Micro and Nano Letters.2017,Vol.12(No.9):618-623. (SCI收录)
3、许金凯,王煜天,张世忠. 驱动冗余重型并联机构的动力学性能[J]. 吉林大学学报(工学版),2017, 47(4):1138-1143. (EI收录)
4、Jinkai Xu, Kui Xia, Zhongxu Lian, Linshuai Zhang, Huadong Yu, Zhanjiang Yu, Zhankun Weng, Zuobin Wang. Surface properties on magnesium alloy and corrosion behaviour based high-speed wire electrical discharge machine power tubes[J].Micro and Nano Letters.2016,Vol.11(No.1):15-19. (SCI收录)
5、Jinkai Xu, Linshuai Zhang, Huadong Yu, ZhanJiang Yu, Jun Lou. Antifriction performance of Ti-6Al-4V alloy-colored surface by using WEDM-HS press[J]. The International Journal of Advanced Manufacturing Technology. 2015, Vol.77(No.1-4):729-734. (SCI收录)
6、Jinkai Xu, Kui Xia, Rongxian Qiu, Linshuai Zhang, Zhanjiang Yu, Huadong Yu. Study on Cutting Surface Stripe and Wettability of AZ91D Magnesium Alloy by WEDM-H[C]. International Conference on Advanced Mechatronic Systems, 2015. (EI收录)
7、Jinkai Xu, Kui Xia, Zhe Xu, Linshuai Zhang, Zhanjiang Yu, Huadong Yu. Study on Hardness and Tribological Properties of High-speed Wire Electrical Discharge Machining Surface[C]. IEEE International Conference on Mechatronics and Automation, 2015. (EI收录)
8、Jinkai Xu, Kui Xia, Linshuai Zhang, Zhanjiang Yu , Huadong Yu, The surface element deposition and corrosion behavior study of multi-cutting in the machining of magnesium alloys[C]. International Conference on Mechanical Engineering and Instrumentation, 2015. (EI收录)
9、Jinkai Xu, KuiXia, Linshuai Zhang, Huadong Yu, Zhanjiang Yu, The Processing Technology of the Colored Ti-6Al-4V Alloy Surface by WEDM-HS and Hardness Analysis[C]. International Conference on Manipulation, Manu?facturing and Measurement on the Nanoscale, 2015. (EI收录)
10、Jinkai Xu, Chuanpengh Chu, Zhilong Zhao, Xingxing Wang, Building of laser assisted micromachining temperature field [C]. Atlantis press 16,2015, pp.488-491. (EI收录)
11、Jinkai Xu, Linshuai Zhang, Fei Huang. Research of Layered Machining Experiment by Micro-EDM[C]. Applied Mechanics and Materials, 2014. (EI收录)
12、Jinkai Xu, Linshuai Zhang, Kui Xia, Huadong Yu, Jun Lou, Zhanjiang Yu. Antifriction Performance of Ti-6Al-4V Alloy Strengthening Surface by WEDM-HS[C]. International Conference on Mechatronics and Automation, 2014, August 3 - 6, Tianjin. (EI收录)
13、Jinkai Xu, Linshuai Zhang, Huadong Yu, Jun Lou, Zhanjiang Yu and Kui Xia. Discharge Coloring Technology for Titanium Alloy Surface by Using WEDM-HS[C]. International Conference on Mechatronics and Automation, 2014, August 3 - 6, Tianjin. (EI收录)
14、Jinkai Xu, Linshuai Zhang, Kui Xia, Shaoting Du, Huadong Yu, Qiang Ding, Zhanjiang Yu. Ultrasonic Vibration Spindle Key Components Design and Dynamics Analysis[C]. International Conference on Mechatronics and Automation. 2014. August 3 - 6, Tianjin(EI收录)
15、许金凯,张林帅,弯艳玲,廉中旭,于化东. 电火花线切割制备超疏水铜表面的正交试验[J].
长春理工大学学报(自然科学版),2015,03:37-40+45.
16、许金凯,杜少婷,王荔檬,王晶东,丁戗,张林帅. 超声振动主轴关键部件设计与动力学分析[J].
长春理工大学学报(自然科学版),2014,02:29-33.
17、许金凯,于化东,于占江,谢丹. 轴对称非球面平行磨削Y轴向对刀误差补偿[J].
长春理工大学学报(自然科学版),2012,03:68-71+58.
18、许金凯,张立中,金珈成,王城钢,曾奇. 高寒区机载电力巡线光电稳定吊舱系统设计及应用[J].
中国电机工程学报,2012,31:200-208+237. (EI收录)
19、许金凯,丁戗,于化东,王志超. 非球面透镜表面特性理论分析[J].
长春理工大学学报(自然科学版),2012,04:31-33.
20、许金凯,张学军,于化东,谢丹. 轴对称非球面精密磨削误差补偿[J].
红外与激光工程,2011,05:894-900. (EI收录)
二、专利
1、许金凯(1/4),基于力反馈的微型双刀纵切高速车削随动支撑装置,国家发明,已授权,ZL201710009747.7;
2、许金凯(1/5),小型超声波高速钻削数控机床,国家发明,已授权,ZL201510408336.6;
3、许金凯(1/8),布点固定式森林火情监测系统,国家发明,已授权,ZL201210184938.4;
4、许金凯(1/10),基于舵机驱动的高压输电巡线及作业机器人手臂国家发明,已授权,ZL201510827715.9;
5、许金凯(1/12),高压输电线巡线模拟装置,国家发明,已授权,ZL201210414292.4;
6、许金凯(1/8),精密超精密磨削砂轮径向误差补偿方法及其应用,国家发明,已授权,ZL 201210574793.9;
7、许金凯(1/8),陈爽. 微小型数控铣床对刀方法,国家发明,已授权,ZL 201210574683.2;
8、许金凯(1/8),车载移动式林区火情监测系统,国家发明,已授权,ZL 201210184936.5;
三、教材及著作
四、获奖
1、许金凯(2/15),“微小零件精密/超精密加工与检测技术”,
吉林省技术发明一等奖,吉林省科学技术奖励委员会,2017年;
五、成果转化
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