[1] van MALSEN R A H, ACHTEN P A J, VAEL G E M. Design of dynamic and efficient hydraulic systems around a simple hydraulic grid, SAE paper[R]. USA: SAE International, 2002:1432-1443. [2] VAEL G E M, ACHTEN P A J, FU Zhao. The innas hydraulic transformer-the key to the hydrostatic common pressure rail[R]. USA: SAE International, 2000:2561-2576. [3] 杨华勇, 欧阳小平, 徐兵. 液压变压器的发展现状[J]. 机械工程学报, 2003, 39(5): 1-5. YANG Hua-yong, OUYANG Xiao-ping, XU Bing. Development of hydraulic transformer[J]. Journal of Mechanical Engineering, 2003, 39(5): 1-5. (in Chinese) [4] ACHTEN P A J, FU Zhao, VAEL G E M. Transforming future hydraulics: a new design of a hydraulic transformer[C]∥Proc 5th Scandinavian International Conference on Fluid Power, SICFP’97. IKP: Linkoping University, 1997: 1-23. [5] PETER P A J, van den BRINK T L, van den OEVER J, et al. Dedicated design of the hydraulic transformer[C]∥Proc 3rd International Fluid Power Conference.Aachen, Germany: 2002:233-248. [6] 欧阳小平. 液压变压器研究[D]. 杭州:浙江大学, 2005. OUYANG Xiao-ping. Research on the hydraulic transformer[D]. Hangzhou: Zhejiang University, 2005. (in Chinese) [7] 吕进中. 斜轴式液压变压器变压特性与配流盘受力分析研究[D]. 北京:北京理工大学, 2008. LV Jin-zhong. Analysis of the characteristics of transformer ratio and of stress of valve plate about angle type hydraulic transformer [D]. Beijing: Beijing Institute of Technology, 2008. (in Chinese) [8] 许铁军. 斜轴式液压变压器变压技术研究[D]. 北京:北京理工大学, 2007. XU Tie-jun. Research on the transformer technology of angle type hydraulic transformer[D]. Beijing: Beijing Institute of Technology,2007. (in Chinese) |