Shilong Wang
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·Paper Publications
- [1] Wang,Zehua,Wang,王泽华,Wang,Qian,Tang,Zenya,Zhao,Shilong,Wang.An intelligent process parameters determination method based on multi-algorithms fusion: A case study in five-axis milling:Robotics and Computer-Integrated Manufacturing,2021,73(2021):102244
- [2] Bo,Yang,Bo,Yang,杨波,Tianguo,Jin,Qingqing,Cheng,Shilong,Wang.Scheduling of field service resources in cloud manufacturing based on multi-population competitive-cooperative GWO:Computers & Industrial Engineering,2021,154(2021):107104
- [3] Jianpeng,Dong,dongjianpeng,Wang,Bo,Yang,Sibao,Wang,Chi,Ma,Jie,Zhou.An improved model for predicting the shearing process of stainless steel thin-walled tubes in the closed fuel cycle:Thin-Walled Structures,2021,157(2020):107101
- [4] Jianpeng,Dong,dongjianpeng,Wang,Bo,Yang,Sibao,Wang,Chi,Ma,Jie,Zhou.Experimental and numerical investigation on the shearing process of stainless steel thin-walled tubes in the spent fuel reprocessing:Thin-Walled Structures,2019,145(2019):106407
- [5] Wang,Yankai,Wang,王彦凯,Bo,Yang,Xixuan,Guo,Song,Gao.Adaptive multi-objective service composition reconfiguration approach considering dynamic practical constraints in cloud manufacturing:Knowledge-Based Systems,2021,234(2021):107607
- [6] Jialan,Liu,刘佳兰,Hu,Bo;Shi,Sibao;Yang,Shilong;Wang,Wang.Thermal-Structure Interaction Characteristics of a High-Speed Spindle-Bearing System:International Journal of Machine Tools & Manufacture,2019,137(2019):42-57
- [7] Wang,Yankai,Wang,王彦凯,Bo,Yang,Chunfeng,Shen,Dong,Li.An improved multi-objective whale optimization algorithm for the hybrid flow shop scheduling problem considering device dynamic reconfiguration processes:Expert Systems with Applications,2021,174(2021):114793
- [8] Wang,Yankai,Wang,王彦凯,Wang,Sibao,Wang,Ling,Kang.An effective dynamic service composition reconfiguration approach when service exceptions occur in real-life cloud manufacturing:Robotics and Computer-Integrated Manufacturing,2021,71(2021):10143
- [9] Changjiu,Xia,夏长久,Wang,Yuliang,Xiao,Sibao,Wang,Chi.,Ma.Crucial geometric error compensation towards gear grinding accuracy enhancement based on simplified actual inverse kinematic model. International Journal of Mechanical Sciences:International Journal of Mechanical Sciences,2020,169(2020):105319
- [10] Changjiu,Xia,夏长久,Xiaodiao,Huang,Xiaochuan,Lin,Chi,Ma,Shouli,Sun.An identification method for crucial geometric errors of gear form grinding machine tools based on tooth surface posture error model:Mechanism and Machine Theory,2019,138(2019):76-94
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