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能量回收型液压往复密封耐久性试验回路设计
引用本文:王锐,赵秀栩,夏亚歌,张祝福.能量回收型液压往复密封耐久性试验回路设计[J].机床与液压,2019,47(10):82-84.
作者姓名:王锐  赵秀栩  夏亚歌  张祝福
作者单位:武汉理工大学机电工程学院,湖北武汉,430000;广东天恒液压机械有限公司研发部,广东韶关,512000
基金项目:国家自然科学基金资助项目(51541510)
摘    要:对现有液压往复密封耐久性试验回路进行了分析,并仿照全桥式整流电路的原理来改进GB/T 15622-2005推荐的液压往复密封耐久性试验回路。引入以蓄能器为能量转换核心的能量回收和利用装置,并通过AMESim软件进行了仿真。试验结果表明:改进后的能量回收型回路设计能够有效降低所需功率,解决液压系统发热问题,减小液压缸换向冲击。

关 键 词:液压往复密封耐久性试验回路  能量回收和利用  AMESIM

Design of an Energy Recovery Type Hydraulic Reciprocating Seal Durability Test Circuit
WANG Rui,ZHAO Xiuxu,XIA Yage,ZHANG Zhufu.Design of an Energy Recovery Type Hydraulic Reciprocating Seal Durability Test Circuit[J].Machine Tool & Hydraulics,2019,47(10):82-84.
Authors:WANG Rui  ZHAO Xiuxu  XIA Yage  ZHANG Zhufu
Affiliation:(School of Mechanical and Electronic Engineering,Wuhan University of Technology,Wuhan Hubei 430000,China;Guangdong Tianheng Hydraulic Machinery R&D Department,Shaoguan Guangdong 512000,China)
Abstract:The existing hydraulic reciprocating seal durability test circuit was analyzed, and the principle of the full bridge rectifier circuit was used to improve the durability test circuit of the hydraulic reciprocating seal recommended by GB/T 15622-2005. The energy recovery and utilization device with the accumulator as the energy conversion core was introduced and simulated by AMESim software. The experimental results show that the improved energy recovery circuit design can effectively reduce the required power, solve the heating problem of the hydraulic system, and reduce the reversing impact of the hydraulic cylinder.
Keywords:Hydraulic reciprocating seal durability test circuit  Energy recovery and utilization  AMESim
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