Motion characteristics and energy efficiency of potential energy recycling system of telescopic handler

Huairen Xu, Zhiqi Liu, Yao Wang, Lei Ge
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Abstract

. Telescopic handler is combined of truck crane and forklift. Equipped with different accessories, the telescopic handler can achieve fork loading, lifting and other operations. Large amount of energy is needed to maintain lifting and lowering in large range with high frequency of the working device of telescopic handler. There is no energy recycling device for the working device that leads to the large dissipating of gravitational potential energy. In order to recycle the wasted energy, a three-chamber hydraulic cylinder boom system (TCCBS) is proposed. In this paper, the recycling principle is described. Then the energy consumption characteristics are analyzed. Further, the mode of TCCBS of telescopic handler is established and analyzed. Compared with the double chamber cylinder boom system (DCCBS), the single-action time of the boom is reduced 4.15 s. The velocity shock decrease from 0.12 m/s to 0.02 m/s at the beginning of the boom lowering process. The peak pressure decreased from 24 MPa to 21 MPa and the average pressure decreased from 17 MPa to 13 MPa during boom lifting process. The potential energy recycling of the working device is 139 kJ, which accounts for about 47.1 % of total potential energy. The cumulative output energy of TCCBS is 311 kJ, which is 92 kJ less than the DCCBS. The comprehensive energy saving efficiency is 22.3 %. The results show that the TCCBS can realize the potential energy recycling.
伸缩式处理机势能回收系统的运动特性及能效研究
. 伸缩式装卸机是由汽车起重机和叉车组合而成。配有不同配件,可实现叉装、吊装等操作。伸缩式装卸机的工作装置要保持大范围、高频率的升降,需要消耗大量的能量。工作装置没有能量回收装置,导致重力势能耗散较大。为了回收浪费的能量,提出了一种三腔液压缸臂架系统。本文阐述了回收利用的原理。然后分析了其能耗特性。在此基础上,建立并分析了伸缩式机械手的TCCBS模型。与双腔气缸臂架系统(DCCBS)相比,臂架单次动作时间缩短4.15 s。在降臂过程开始时,速度冲击从0.12 m/s减小到0.02 m/s。在臂架提升过程中,峰值压力从24 MPa降至21 MPa,平均压力从17 MPa降至13 MPa。工作装置的势能回收为139 kJ,约占总势能的47.1%。TCCBS的累计输出能量为311 kJ,比DCCBS少92 kJ。综合节能效率为22.3%。结果表明,TCCBS可以实现潜在的能源回收。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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