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14篇 您的检索式:作者名="Helduser"
    题名 作者 年代 出处 被引量
1基于可调速电动机的高动态节能型电液动力源显示文摘对应用液压泵与转速可调电动机组成的电液动力源进行了分析和比较 ,研究了泵和电机的多种组合 ,给出了可满足不同功能要求的回路原理 ,对这一系统控制流量、压力的动静态性能进行了试验研究 ,揭示了该系统特有的内在运行规律。结果表明 ,新的原理方案较现有的变排量控制原理具有更高的效率 ,可作为高效。权龙 Helduser S 2003中国机械工程2003,14,7:34
2转速可调泵直接闭环控制差动缸伺服系统的动特性显示文摘介绍新提出的用变转速液压泵闭环控制的差动缸电液伺服系统。新的原理是一项对环境有益的电液控制技术,组成的系统不存在原理上的节流损失,且在辅助工作周期不消耗能量,因而可极大地提高电液伺服系统的效率,研究表明,应用新提出的总压力控制原理,系统能获得与阀控回路相当的动态特性。权龙 Neubert T Helduser S 2003机械工程学报2003,39,2:27
3PRINCIPLE TO CLOSED LOOP CONTROL DIFFERENTIAL CYLINDER WITH DOUBLE SPEED VARIABLE PUMPS AND SINGLE LOOP CONTROL SIGNAL显示文摘To control the position of differential cylinder closed loop without using any throttle elements, a new idea that two speed variable pumps are used to compensate the non-symmetric flow of differential cylinder is carried out.According to the leaking property of the system, a speed offset principle is also proposed to eliminate the cavitation and tension caused by the leakage and condensation of oil, which makes the system be in the same state as a valve controlled circuit.This principle is explained theoretically and experimentally.Further the relationship that the pressures in cylinder chambers change with load and leakage, and the relationship between biasing speed and pre-load pressures in cylinder chambers are established.The research has proved that the new system has similar technique features as those of controlled with servo valves, but due to the elimination of all the throttle lose the efficiency of system can be improved greatly.QuanLong NeubertT HelduserS 2004Chinese Journal of Mechanical Engineering2004,17,1:8
4优化潜力显示文摘流体技术的驱动设备在减少噪声和提高能效方面具有潜力。Joerg weingart Siegfried Helduser 2007机电产品市场2007,,11:1
5Innovative Pump Design to Reduce Pressure Pulsations of Axial Piston Pump 显示文摘Becher D Helduser S 2000Workshop on Power Transmission and Motion Control Bath England2000,231,4:1
6Electric-hydrostatic drive--an innovative energy-sav- ing power and motion control system 显示文摘Helduser S 1999Proc Instn Mech En- grs1999,213,:1
7Electric-hydrostatic drive-an innovative energy- saving power and motion control system 显示文摘S Helduser 1999Proceedings of the Institution of Mechanical Engineers Part I: Journal of Systems and Control Engineering1999,213,5:1
8Positiontracking control of a clamp-cylinder for energy-savinginjection moulding machines with electric-hydrostaticdrives显示文摘CHO S H R CKLEBE S HELDUSER S 2009Proceeding of the Institution of MechanicalEngineers Part 1:Journal of Systems and ControlEngineering2009,223,4:1
9Electric-hydrostatic drive-an innovativeenergy-saving power and motion control system显示文摘HELDUSER S 1999Proceedings of the Institution of Mechanical Engineers Part I:Journal of Systems and Control Engineering1999,213,5:1
10Innovative Pump Design to Reduce Pressure Pulsations of Axial Piston Pumps 显示文摘Becher D Helduser S 2000Workshop on Power Transmission and Motion Control Bath England2000,231,4:1
11Electric-hydrostatic drive-an innovative energy-saving power and motion control system显示文摘HELDUSER S 1999Proc of Institution of Mechanical Engineers1999,,213:1
12Innovation pump design to reduce pressure pulsations of axial piston pumps显示文摘Becher D Helduser S 0,,:1
13工艺过程的最佳化显示文摘通过计算机模拟来改善液压机上冲压传动系统的最佳化设置。Siegfried Helduser Thomas Neubert 2004现代制造2004,,29:0
14优化潜力显示文摘德莱斯顿技术大学流体技术研究所的研究工作分为三个重点: 实现虚拟设计的工作。 继续开发电液压系统技术,主要是在注塑机和液压压力机方面的应用。 继续开发流体技术设备,特别在减少噪声和提高能效方面。通过虚拟设计可以在较短的时间内花较少的费用进行预测。可以得到驱动系统的一个总体的设计,从而作出适合的调节规划和给出调节器参数。这样可以合理地改进电液压系统技术(方框图)。与此相比,在设备研制上,改善效率和减少噪声是流体技术驱动设备的环境相容性和竞争能力方面的重要课题。Joerg Weingart Siegfried Helduser 2006现代制造2006,,26:0
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