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Direct driven hydraulic drive for new powertrain topologies for non-road mobile machinery

机译:直接驱动液压驱动,用于非道路移动机械的新动力总成拓扑

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Tightening of emission rules and a desire to improve energy efficiency pushes even further the need for hybridization of non-road mobile machinery (NRMM). Consequently, this paper illustrates potential of the application of directly driven hydraulic drive (DDH) for NRMM from an energy efficiency point of view. The control of the DDH system was implemented directly with a servomotor driving a pump without conventional hydraulic control valves. Angular speed of the servomotor, in-coming oil flow from the pump, and out-going flow to the hydraulic motor determined the velocity of the double-acting cylinder piston. An earlier study by the authors presented that the hydro-mechanical losses were dominant in the original DDH setup. Resulting theoretical investigation indicated that the best scenario efficiency for DDH was estimated to be 76.7%. Therefore, this paper provides a detailed analysis based on Sankey diagrams of various powertrain topologies with DDH. This study of powertrains illustrated that DDH has the highest impact with 174% efficiency improvement with an electric NRMM powered by batteries instead of a conventional topology. (C) 2017 The Authors. Published by Elsevier B.V.
机译:排放法规的严格化以及提高能源效率的要求进一步推动了非道路移动机械(NRMM)混合动力的需求。因此,本文从能源效率的角度说明了直接驱动液压驱动(DDH)在NRMM中的应用潜力。 DDH系统的控制直接由伺服电机驱动,无需传统的液压控制阀即可驱动泵。伺服电机的角速度,来自泵的进油流量以及至液压马达的出油流量决定了双作用气缸活塞的速度。作者的较早研究表明,水力损失在原始DDH装置中占主导地位。理论研究结果表明,DDH的最佳方案效率估计为76.7%。因此,本文基于带DDH的各种动力总成拓扑的Sankey图提供了详细的分析。动力总成的这项研究表明,采用电池供电的电动NRMM代替传统的拓扑结构,DDH的影响最大,效率提高了174%。 (C)2017作者。由Elsevier B.V.发布

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