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高压气动伺服滑阀质量流量特性参数的测量

Measurement of the mass-flow-rate characterization parameters of high-pressure pneumatic servo slide valves.

作者信息

Zhang Dijia, Gao Longlong, Zhou Shaoliang, Ma Yuxuan, Li Baoren

机构信息

FESTO Pneumatics Centre, School of Mechanical Science and Engineering, Huazhong University of Science and Technology, Wuhan, 430074, China.

出版信息

Sci Rep. 2022 Feb 28;12(1):3273. doi: 10.1038/s41598-022-07377-z.

Abstract

The mass-flow-rate characteristics of high-pressure pneumatic servo valves (HPSVs) have an important effect on the dynamic performance of high-pressure servo systems. However, these characteristics are difficult to obtain by theoretical calculations and flowmeter measurements owing to the compressibility of high-pressure gas. In this paper, a new measurement method of the mass-flow-rate characterization parameters of HPSVs is proposed based on the principle of the series connection sonic discharge of valve orifices. The effective cross-sectional area and critical pressure ratio of the servo valve orifices can be accurately and efficiently determined by connecting two valve orifices in series and exchanging the flow sequence of the two valve orifices. The two assumptions including the sonic and adiabatic discharge of the proposed measurement method were verified. A comparison between the test and simulation data showed that the accuracy of the measured effective cross-sectional area and critical pressure ratio of the HPSV was high. The measured critical pressure ratio ranged from 0.46 to 0.50, and the flow coefficient represented by the effective cross-sectional area variation decreased with increasing valve opening. These findings have general implications for the accurate design, analysis, and control of high-pressure pneumatic servo systems.

摘要

高压气动伺服阀(HPSV)的质量流量特性对高压伺服系统的动态性能有重要影响。然而,由于高压气体的可压缩性,通过理论计算和流量计测量很难获得这些特性。本文基于阀口串联音速排放原理,提出了一种新的HPSV质量流量特性参数测量方法。通过将两个阀口串联并交换两个阀口的流动顺序,可以准确、高效地确定伺服阀口的有效截面积和临界压力比。验证了所提测量方法的音速排放和绝热排放这两个假设。试验数据与仿真数据的比较表明,HPSV有效截面积和临界压力比的测量精度较高。测得的临界压力比范围为0.46至0.50,有效截面积变化所表示的流量系数随阀开度增加而减小。这些发现对高压气动伺服系统的精确设计、分析和控制具有普遍意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f94/8885647/4a8cdc99b0c0/41598_2022_7377_Fig1_HTML.jpg

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