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直线共轭内啮合齿轮泵流量脉动特性研究
引用本文:宣元,何琳,陈宗斌. 直线共轭内啮合齿轮泵流量脉动特性研究[J]. 机床与液压, 2021, 49(9): 171-176
作者姓名:宣元  何琳  陈宗斌
作者单位:海军工程大学振动与噪声研究所, 湖北武汉430033;海军工程大学船舶振动噪声国家重点实验室, 湖北武汉430033
基金项目:国防科技重点实验室基金项目(6142204180301)
摘    要:基于面积扫过法计算直线共轭内啮合齿轮泵理论瞬时流量,得到啮合点位置与泵瞬时流量的对应关系,进而求得泵几何流量脉动.产生困油容腔是泵实际运行过程中普遍存在的现象,也是影响泵出口流量平稳性的关键因素.对直线共轭内啮合齿轮泵运行过程进行分析,依据控制容积法将内部流道划分为吸油容腔、排油容腔、齿轮齿间容腔、齿圈齿间容腔和困油容...

关 键 词:直线共轭内啮合齿轮泵  容腔模型  AMESim仿真  流量脉动

Research on Flow Fluctuation Characteristics of Linear Conjugated Internal Gear Pump
XUAN Yuan,HE Lin,CHEN Zongbin. Research on Flow Fluctuation Characteristics of Linear Conjugated Internal Gear Pump[J]. Machine Tool & Hydraulics, 2021, 49(9): 171-176
Authors:XUAN Yuan  HE Lin  CHEN Zongbin
Abstract:Theoretical instantaneous flow of the linear conjugated internal gear pump was calculated based on the area sweep method, the corresponding relationship between the position of the meshing point and the instantaneous flow of the pump was obtained, and then the geometric flow ripple of the pump was calculated. The occurrence of trapped oil chamber is a common phenomenon during the actual operation process of the pump, and it is also a key factor affecting the smoothness of the pump outlet flow. The operation process of the linear conjugate internal gear pump was analyzed, the internal flow channel was divided into suction chamber, oil discharge chamber, gear intergrade chamber, gear ring intergrade chamber, and trapped oil chamber according to the control volume method. The AMESim simulation model of the linear conjugated internal gear pump was established, and analysis and simulation verification for the fluid movement status inside the pump were carried out. The results show that the model can reflect the instantaneous flow mutation caused by the occurrence of trapped oil chamber in the actual operation of the pump; the flow ripple rate of the simulation model is 2.29%, higher than the geometric flow ripple rate which is 1.71%.The research result reveals the cause and changing rules of the pump flow ripple, and provides a reference for the flow characteristics research and optimization design of linear conjugate internal gear pump.
Keywords:
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