2011-2015 河南理工大學 機械設計
2015-2019 河南理工大學 機械工程
2019-2022 日本室蘭工業大學 尖端生產系統工程
期刊論文
1.Song Gao, Yueming Zhang, Tianyu Li, Xiaoguang Ding, Shuting Ji*, and Zhihang Cao. Influence of cycloid pinwheel reducer structure parameters on transmission performance and optimized design with considering friction loss, Optimization and Engineering. (Accepted on Aug. 13th, 2024, SCI, 中科院2區, IF: 2.0)
2.Song Gao, Yueming Zhang, Yiwan Li, Shuting Ji*, Tengyue Wei, and Zhanli Wang. Piecewise modification of cycloidal gear in RV reducer: application of spline interpolation theory and comparison with a combination modification optimization method, International Journal of Precision Engineering and Manufacturing. (Accepted on Aug. 6th, 2024, SCI, 中科院2區, IF: 2.6)
3.Song Gao, Yiwan Li, Yueming Zhang, Shuting Ji*, and Jiapeng Wang. Lifespan evaluation for a standard RV reducer based on fatigue strength theory, Strojniški vestnik - Journal of Mechanical Engineering. (Accepted on Jul. 12th, 2024, SCI, 中科院3區, IF: 1.7)
4.Song GAO, Yueming ZHANG, Shuting JI*, Yiwan LI, and Wentai LI. Multi-objective optimized design for modified cycloid-pin gear drive mechanism based on load-bearing capacity, Journal of Advanced Mechanical Design, Systems, and Manufacturing, Vol.18, No.2 (2024), DOI:10.1299/ jamdsm.2024jamdsm0015. (SCI, 中科院4區, IF: 0.8)
5.Song GAO, Yueming ZHANG, Shuting JI*, Shuo LIU, and Wentai LI. Double-stage multi-objective optimized design for cycloid pinwheel reducer, Journal of Mechanical Science and Technology, Vol.38, No.1 (2023), DOI:10.1007/s12206-023-1227-6. (SCI, 中科院3區, IF: 1.5)
6.Song GAO*, and Xiaolin WANG. Theoretical modeling and transmission characteristics analysis of a novel double‑roller hourglass worm drive based on enveloping principle, Discover Mechanical Engineering, Vol.2, No.20 (2023), DOI:10.1007/s44245-023-00029-0. (CNKI)
7.Song GAO, and Toshiharu KAZAMA*. Validation of leakage control with oil temperature–viscosity relationship for a standard flange gasket model, Journal of Advanced Mechanical Design, Systems, and Manufacturing, Vol.16, No.2 (2022), DOI:10.1299/jamdsm.2022jamdsm0022. (SCI, 中科院4區, IF: 0.8)
8.Song GAO, and Toshiharu KAZAMA*. Leakage control for a flat flange model with a gap based on sealing liquid viscosity, Journal of Advanced Mechanical Design, Systems, and Manufacturing, Vol.15, No.3 (2021), DOI:10.1299/jamdsm.2021jamdsm0031. (SCI, 中科院4區, IF: 0.8)
9.Toshiharu KAZAMA*, and Song GAO. Gap flow between two circular plates with temperature-controlled wall: application of thermohydrodynamic lubrication theory and comparison with an iso-viscous model, Mechanical Engineering Letters, Vol.6 (2020), DOI:10.1299/mel.20-00292. (JSME)
10.王小林*🙎🏿♂️🚲,舒愛玲✤🩻,高嵩。滾錐參數對滾錐包絡環面蝸桿副接觸線上相對滑動速度的研究影響,河南理工大學學報(自然科學版)🤶。國內刊號:CN 41-1384/N. 國際刊號:ISSN 1673-9787. (北大核心)
學術會議
1.Song GAO, and Toshiharu KAZAMA*. Effect of sealing surface flatness on leakage characteristics of flange-type gasket model using oil viscosity-temperature relations, The 11th JFPS International Symposium on Fluid Power, General Section, Oil Hydraulics, GS4-01, pp.399-405, Hokkaido, Japan, October 12-13, 2021.
2.Song GAO, and Toshiharu KAZAMA*. Leakage characteristics of prototype gasket using viscosity-temperature relation under vibration condition (effect of sealing land and viscosity grade), The 10th International conference on fluid power transmission and control (ICFP 2021), Room 23, S2304, pp.685-690, Zhejiang university, China, April 11-13, 2021.
3.Song GAO, and Toshiharu KAZAMA*. Leakage characteristics of prototype gasket using viscosity-temperature relation under steady-state condition (effect of incline angle), Adamas University & Virtual International Students Conference ISC - Adamas 2020, ISC03, pp.165-171, Adamas university, India, December 5, 2020.
4.Gao Song, and Kazama Toshiharu*. Effect of vibration condition on leakage characteristics of prototype gasket using oil viscosity-temperature, Annual conference of Japan Mechanical Society (JSME), Room 23, S11304, pp.14-18, Nagoya, Japan, September 14-16, 2020.
2017.04 – 2017.10 日本政府JASSO獎學金⌨️,國家級
2019.04 – 2020.03 日本政府JASSO獎學金,國家級
2020.08 北海道外國人助成金🤾🏽♀️,省部級
2020.12 印度 ADAMAS 大學國際學會優秀論文獎,校級
2021.02 日本政府JASSO獎學金(特別追加),國家級
2021.04 – 2022.03 室蘭工業大學校級獎學金👟,校級
gaosong@sspu.edu.cn