耐高压双向椭圆齿轮微小流量计研究  被引量:5

High-pressure Bi-directional Oval Gear Tiny-flow Meter

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作  者:丁凡[1] 邓民胜 刘硕[1] 丁川[1] 满在朋[1] 李其朋[1] 

机构地区:[1]浙江大学流体动力与机电系统国家重点实验室,杭州310027

出  处:《农业机械学报》2015年第6期327-333,共7页Transactions of the Chinese Society for Agricultural Machinery

基  金:国家自然科学基金创新研究群体科学基金资助项目(51221004);流体动力与机电系统国家重点实验室开放基金资助项目(GZKF-201315)

摘  要:提出了一种基于低偏心率椭圆齿轮转子适用于高压下微小流量计量的双向椭圆齿轮流量计结构,阐述了该种流量计的工作原理,给出了低偏心率椭圆齿轮转子的节曲线及齿廓方程,并设计了样机进行实验研究。实验表明,在31.5 MPa以下,0.05-3 L/min流量范围内的计量精度可达±0.5%,在0.03-3 L/min流量范围内的计量精度可达±1%,具有耐高压、结构简单、精度高、脉动小、可双向计量等优点。With the popularity of high pressure hydraulic system and the increasing requirements for the efficient and automatic control,the measure of tiny flow under the high pressure condition is more and more important. And the relevant research also has great importance for the development of domestic flow meters industry. A bi-directional oval gear flowmeter used for the measurement of tiny flow under high pressure condition was presented,which used a pair of low eccentricity oval gears as the core components and used hall sensors for the non-contact signal-detection. The designed flowmeter was with a lower displacement in order to measure tiny flow. A fully closed measurement volume was built so that the flowmeter can endure high pressure. A complete CAD model was established for the CNC machining of oval gear in order to ensure the high accuracy,including the pitch curve equation of oval gear and the solution of tooth profile based on the converted method. In order to validate the design and research the flowmeter's metrological characteristics,experiments on a prototype fabricated were performed. And a modification method of flow coefficient was proposed on the basis of least square method. The experiments results showed that the maximal pressure loss was 0. 46 MPa at flow rate of 3 L / min,and the flowmeter was with a relative error less than 1% over a flow rate range of 0. 03 - 3 L / min,and 0. 5% over a flow rate range of 0. 05 - 3 L / min.

关 键 词:椭圆齿轮流量计 低偏心率 微小流量 耐高压 高精度 

分 类 号:TH814.8[机械工程—仪器科学与技术]

 

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