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·1190* 工程科学学报,第37卷,第9期 冲间隙设计.矿山机械,2014,42(1):11) Wuhan Univ Technol,2011,33(8):133 ]Geng X G,Ma F,Li Y L,et al.Dynamic simulation based (舒敏飞,何清华,赵宏强,等.液压凿岩机冲击压力及冲击 AMESim for double damper system of hydraulic rock drill.Chin 性能仿真研究.武汉理工大学学报,2011,33(8):133) Hydraul Pneum,2014(8):18 [15]Jin Z M.Hydraulic and Fluid Mechanics.Beijing:National De- (耿晓光,马飞,李叶林,等.基于AMESim的液压凿岩机双 fence Industry Press,1994:45 缓冲系统动态仿真门.液压与气动,2014(8):18) (金朝铭.液压流体力学.北京:国防工业出版社,1994: [8]MaX Q.Impact Dynamics.Beijing:Beijing Institute of Technolo- 45) gy Press,1991:57 [16]Zhang W B,Zhou X J.Simulation and characteristic analysis of (马晓青.冲击动力学.北京:北京理工大学出版社,1991: hydraulic bumper.Trans Chin Soc Agric Mach,2008,39 (7): 57) 164 Gao LQ.Theory.Design and Application of Hydraulic Rock Drill (张文斌,周晓军.液压缓冲器特性计算与仿真分析.农业 Beijing:China Machine Press,1998:32 机械学报,2008,39(7):164) (高澜庆.液压凿岩机理论、设计与应用.北京:机械工业出 [17]Giuffrida A,Laforgia D.Modelling and simulation of a hydraulic 版社,1998:32) breaker.Int J Fluid Power,2005,6(2):47 [0]Lin M Y,Zhang W M.Charging characteristics of a hydraulic [18]Lin X,Pan S X,Wang D Y.Dynamic simulation and optimal braking system with accumulator for construction vehicles.Unir control strategy for a parallel hybrid hydraulic excavator.Zhe- Sci Technol Beijing,2007,29(8):831 jiang Unir Sci A,2008,9(5):624 (林慕义,张文明.工程车辆蓄能式液压制动系统充液特性. [19]Li Y L,Ma F,Geng X G.Effect of annular clearance inside the 北京科技大学学报,2007,29(8):831) double damping chamber on the dynamic characteristics of a rock [1]Hu Q.Yang C H.Hao Z.Dynamic simulation and test research drill damping system.J Univ Sci Technol Beijing,2014,36 of impact performance of hydraulic rock drill with no constant- (12):1676 pressurized chamber.Autom Constr,2014(37):211 (李叶林,马飞,耿晓光.双缓冲环形间隙对凿岩机缓冲系 [12]Jiao S J,Liu C L,Miao Z H,et al.Shock wave characteristics 统动态特性的影响.北京科技大学学报,2014,36(12): of a hydraulic damper with parallel passages.J Vib Shock,2007, 1676) 26(9):27 20]Qiu D H,Jia H G,Ma W Y,et al.Dynamic and optimization (焦素娟,刘成良,苗中华,等.并联阻尼结构液压缓冲器冲 design of a cushioning mechanism of articulated landing gear.J 击波形仿真.振动与冲击,2007,26(9):27) ib Shock,2014,33(20):170 [13]Yang G P,Wang R L,Chen B,et al.Modeling and simulation (邱东海,贾宏光,马伍元,等。摇臂式起落架缓冲机构动态 of hydraulic breaker system.China J Hight Transp,2011, 分析与优化设计.振动与冲击,2014,33(20):170) 24(3):121 21]Hu J F,Xu G Y,Hao Y Z.Optimization design of a compound (杨国平,王仁亮,陈博,等.液压破碎锤系统建模与仿真 bridge-ype micro-platform based on dynamic characteristics. 中国公路学报,2011,24(3):121) Trans Chin Soc Agric Mach,2014,45(1):307 [14]Shu M F,He Q H,Zhao HQ,et al.Study on simulation of im- (胡俊峰,徐贵阳,郝亚洲。基于动态特性的复合桥式微动 pact performance and working pressure of hydraulic drifter. 平台优化设计.农业机械学报,2014,45(1):307)工程科学学报,第 37 卷,第 9 期 冲间隙设计. 矿山机械,2014,42( 1) : 11) [7] Geng X G,Ma F,Li Y L,et al. Dynamic simulation based AMESim for double damper system of hydraulic rock drill. Chin Hydraul Pneum,2014( 8) : 18 ( 耿晓光,马飞,李叶林,等. 基于 AMESim 的液压凿岩机双 缓冲系统动态仿真[J]. 液压与气动,2014( 8) : 18) [8] Ma X Q. Impact Dynamics. Beijing: Beijing Institute of Technolo￾gy Press,1991: 57 ( 马晓青. 冲击动力学. 北京: 北京理工大学出版社,1991: 57) [9] Gao L Q. Theory,Design and Application of Hydraulic Rock Drill. Beijing: China Machine Press,1998: 32 ( 高澜庆. 液压凿岩机理论、设计与应用. 北京: 机械工业出 版社,1998: 32) [10] Lin M Y,Zhang W M. Charging characteristics of a hydraulic braking system with accumulator for construction vehicles. J Univ Sci Technol Beijing,2007,29( 8) : 831 ( 林慕义,张文明. 工程车辆蓄能式液压制动系统充液特性. 北京科技大学学报,2007,29( 8) : 831) [11] Hu Q,Yang C H,Hao Z. Dynamic simulation and test research of impact performance of hydraulic rock drill with no constant￾pressurized chamber. Autom Constr,2014( 37) : 211 [12] Jiao S J,Liu C L,Miao Z H,et al. Shock wave characteristics of a hydraulic damper with parallel passages. J Vib Shock,2007, 26( 9) : 27 ( 焦素娟,刘成良,苗中华,等. 并联阻尼结构液压缓冲器冲 击波形仿真. 振动与冲击,2007,26( 9) : 27) [13] Yang G P,Wang R L,Chen B,et al. Modeling and simulation of hydraulic breaker system. China J Highw Transp,2011, 24( 3) : 121 ( 杨国平,王仁亮,陈博,等. 液压破碎锤系统建模与仿真. 中国公路学报,2011,24( 3) : 121) [14] Shu M F,He Q H,Zhao H Q,et al. Study on simulation of im￾pact performance and working pressure of hydraulic drifter. J Wuhan Univ Technol,2011,33( 8) : 133 ( 舒敏飞,何清华,赵宏强,等. 液压凿岩机冲击压力及冲击 性能仿真研究. 武汉理工大学学报,2011,33( 8) : 133) [15] Jin Z M. Hydraulic and Fluid Mechanics. Beijing: National De￾fence Industry Press,1994: 45 ( 金朝铭. 液压流体力学. 北京: 国防工业出版社,1994: 45) [16] Zhang W B,Zhou X J. Simulation and characteristic analysis of hydraulic bumper. Trans Chin Soc Agric Mach,2008,39( 7) : 164 ( 张文斌,周晓军. 液压缓冲器特性计算与仿真分析. 农业 机械学报,2008,39( 7) : 164) [17] Giuffrida A,Laforgia D. Modelling and simulation of a hydraulic breaker. Int J Fluid Power,2005,6( 2) : 47 [18] Lin X,Pan S X,Wang D Y. Dynamic simulation and optimal control strategy for a parallel hybrid hydraulic excavator. J Zhe￾jiang Univ Sci A,2008,9( 5) : 624 [19] Li Y L,Ma F,Geng X G. Effect of annular clearance inside the double damping chamber on the dynamic characteristics of a rock drill damping system. J Univ Sci Technol Beijing,2014,36 ( 12) : 1676 ( 李叶林,马飞,耿晓光. 双缓冲环形间隙对凿岩机缓冲系 统动态特性的影 响. 北京科技大学学报,2014,36 ( 12 ) : 1676) [20] Qiu D H,Jia H G,Ma W Y,et al. Dynamic and optimization design of a cushioning mechanism of articulated landing gear. J Vib Shock,2014,33( 20) : 170 ( 邱东海,贾宏光,马伍元,等. 摇臂式起落架缓冲机构动态 分析与优化设计. 振动与冲击,2014,33( 20) : 170) [21] Hu J F,Xu G Y,Hao Y Z. Optimization design of a compound bridge-type micro-platform based on dynamic characteristics. Trans Chin Soc Agric Mach,2014,45( 1) : 307 ( 胡俊峰,徐贵阳,郝亚洲. 基于动态特性的复合桥式微动 平台优化设计. 农业机械学报,2014,45( 1) : 307) ·1190·
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