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撬毛车动力装置及行走驱动装置研究 被引量:1
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作者 刘福康 姜全新 +2 位作者 姜海翔 刘东平 刘绍发 《凿岩机械气动工具》 2020年第1期12-14,共3页
分析了我国在本世纪初研发生产撬毛车过程中,盲目沿用上世纪70-80年代国外撬毛车采用柴油机为动力装置、行走机构采用液压传动的失误。讨论了以柴油机、三相交流异步电动机为动力装置和行走机构采用静液压传动的必要性。建议将"撬... 分析了我国在本世纪初研发生产撬毛车过程中,盲目沿用上世纪70-80年代国外撬毛车采用柴油机为动力装置、行走机构采用液压传动的失误。讨论了以柴油机、三相交流异步电动机为动力装置和行走机构采用静液压传动的必要性。建议将"撬毛车应采用柴油机、三相交流异步电动机为动力装置和行走机构采用静液压传动"和"撬毛车行走机构应采用静液压传动"写入撬毛车产品标准中。 展开更多
关键词 撬毛车 双动力装置 静液压传动
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台式巡航驹
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作者 关联 《摩托车》 2003年第8期9-10,共2页
进入2003年,作为台湾摩托车制造行业的领头羊,光阳公司在巡航车制造领域新招迭出,继早年自行研发的“劲150'’巡航车之后,这次推出了更为吸引人的“VENOX”250巡航先锋,它是台湾首款采用“双V”动力装置的摩托车,完全可以将其视为... 进入2003年,作为台湾摩托车制造行业的领头羊,光阳公司在巡航车制造领域新招迭出,继早年自行研发的“劲150'’巡航车之后,这次推出了更为吸引人的“VENOX”250巡航先锋,它是台湾首款采用“双V”动力装置的摩托车,完全可以将其视为台湾机车发展史上的一个进阶之作,目前它是光阳的主力外销车种。这款车动力强劲,舒适程度高,所以刚刚投放市场就赢得如潮好评,如图1所示。 展开更多
关键词 台式巡航车 摩托车 V”动力装置 设计特点 结构特点 技术参数
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Mechanical Analysis and Numerical Simulation for New Type of Dynamic Control Devices
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作者 CHEN Suhua LI Ruiqi +2 位作者 FEI Liang YU Zhiguang DING Jianming 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2022年第6期735-749,共15页
The conventional dynamic control devices,such as fluid viscous damper(VFD)and isolating bearings,are unsuitable for the double-deck cable-stayed bridge due to a lack of sustainability,so it is necessary to introduce s... The conventional dynamic control devices,such as fluid viscous damper(VFD)and isolating bearings,are unsuitable for the double-deck cable-stayed bridge due to a lack of sustainability,so it is necessary to introduce some high-tech dynamic control devices to reduce dynamic response for double-deck cable-stayed bridges under earthquakes.A(90+128)m-span double-deck cable-stayed bridge with a steel truss beam is taken as the prototype bridge.A 3D finite element model is built to conduct the nonlinear time-history analysis of different site categories in fortification intensityⅨ(0.40 g)degree area.Two new types of dynamic control devices-cable sliding friction aseismic bearings(CSFABs)and elasticity fluid viscous dampers composite devices(EVFDs)are introduced to reduce the dynamic responses of double-deck cable-stayed bridges with steel truss beam.The parametric optimization design for the damping coefficient C and the elastic stiffness of spring K of EVFDs is conducted.The following conclusions are drawn:(1)The hybrid support system by EVFDs and CSFABs play a good function under both seismic and regular work,especially in eliminating the expansion joints damage;(2)The hybrid support system can reduce the beam-end displacement by 75%and the tower-bottom bending moment by 60%under the longitudinal seismic excitation.In addition,it can reduce the pier-bottom bending moment by at least 45%under transverse seismic and control the relative displacement between the pier and beam within 0.3 m.(3)Assuming the velocity indexα=0.3,the parametric optimization suggests the damping coefficient C as 2000 kN·s·m-1in siteⅠ0,4000kN·s·m-1in siteⅡ,6000 kN·s·m-1in siteⅣ,and the elastic stiffness of spring K as 10000 kN/m in siteⅠ0,50000 kN/m in siteⅡ,and 100000 kN/m in siteⅣ. 展开更多
关键词 dynamic control device double-deck cable-stayed bridge with steel truss beam cable-sliding friction aseismic bearings(CSFABs) elasticity fluid viscous dampers composite devices(EVFDs)
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