机床与液压2024,Vol.52Issue(8) :147-152.DOI:10.3969/j.issn.1001-3881.2024.08.024

基于双蓄能器切换的非对称泵势能回收系统

Asymmetric Pump Potential Energy Recovery System Based on Double Accumulator Switching

李佳君 吴慧娟 权龙 宁志强 高有山 王爱红 卫立新
机床与液压2024,Vol.52Issue(8) :147-152.DOI:10.3969/j.issn.1001-3881.2024.08.024

基于双蓄能器切换的非对称泵势能回收系统

Asymmetric Pump Potential Energy Recovery System Based on Double Accumulator Switching

李佳君 1吴慧娟 1权龙 2宁志强 1高有山 1王爱红 1卫立新1
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作者信息

  • 1. 太原科技大学机械工程学院,山西太原 030024
  • 2. 太原理工大学机械与运载工程学院,山西太原 030024
  • 折叠

摘要

针对挖掘机动臂在下落过程中单个蓄能器回收势能效率有限的问题,提出一种高低压双蓄能器切换的能量回收策略.基于能量回收原理,利用计算机仿真软件SimulitionX,根据工作装置的三维结构模型建立3D仿真模型和液压系统仿真模型.在此基础上研究挖掘机工作装置姿态对动臂势能回收效率的影响,对不同作业模式下蓄能器不同压力时的动臂伸缩过程进行模拟分析.最后调查统计了某工地挖掘机某段时间内的作业情况,并进行了计算分析.结果表明:挖掘机在该作业情况下,使用3 MPa和5 MPa的高低压双蓄能器回收能量比使用3 MPa的低压蓄能器效率提升29.23%,比使用5 MPa的高压蓄能器效率提升9.06%.

Abstract

Aiming at the limited efficiency of a single accumulator recovering potential energy in the process of the excavator boom falling,an energy recovery strategy of high and low pressure double accumulator switching was proposed.Based on the principle of energy recovery,the 3D simulation model and hydraulic system simulation model were established by using the computer simulation software SimulitionX according to the 3D structure model of the working device.On this basis,the influence of excavator working device posture on boom potential energy recovery efficiency was studied,and the boom expansion process under different operation modes with different accumulator pressures was simulated and analyzed.Finally,the operation of excavator in a certain period of time was investigated and an-alyzed.The results show that in this operation condition,the efficiency of energy recovery by switching between 3 MPa and 5 MPa high and low pressure double accumulators is 29.23%higher than that of 3 MPa low pressure accumulators,and 9.06%higher than that of 5 MPa high pressure accumulators.

关键词

挖掘机动臂/双蓄能器切换/势能回收/仿真

Key words

excavator boom/double accumulator switching/potential energy recovery/simulation

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基金项目

山西省自然科学基金(20210302123217)

山西省回国留学人员科研项目(2020-124)

山西省研究生创新项目(2021)(2021Y695)

太原科技大学大学生创新创业训练计划(XJ-2022180)

出版年

2024
机床与液压
中国机械工程学会 广州机械科学研究院有限公司

机床与液压

CSTPCD北大核心
影响因子:0.32
ISSN:1001-3881
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