|
|
Design of Key Parameters of Piston-cylinder Assembly of 500MPa Piston Pressure Gauge |
WANG Chen1,LIU Huan-yu1,YANG Yuan-chao2,FAN Shuang-jiao1,CAO Jin3,PANG Gui-bing1 |
1. College of Mechanical Engineering and Automation, Dalian Polytechnic University, Dalian, Liaoning 116033, China
2. National Institute of Metrology, Beijing 100029, China
3. Chongqing Institute of Metrology and Quality Inspection Chongqing 400050, China |
|
|
Abstract According to the requirements of 500MPa piston pressure gauge piston system design, its parameters are calculated theoretically, and the section diameter of piston rod, the maximum length of piston rod extending out of piston barrel, the outer diameter of piston barrel and the gap between piston barrel and fixed sleeve are determined. The design results are analyzed by finite element analysis software. The results show that the strength of the piston system is reliable. The piston system is manufactured according to the design results, and the verification test is carried out on the self-developed 500MPa piston pressure gauge prototype. The piston system operates stably in the process of 500 times of pressurization and decompression. The uncertainty of piston is calibrated, and the expanded uncertainty is 0.0038%. It shows that the structural design of the piston system is reasonable and can meet the requirements of practical application.
|
Received: 06 May 2021
Published: 06 December 2021
|
|
|
|
|
[1]王淮阳, 胡珊珊, 刘正士,等. 双活塞式高精度深海压力模拟方法[J]. 计量学报, 2021, 42(2):199-203.
Wang H Y, Hu S S, Liu Z S, et al. High Precision Deep Sea Pressure Simulation Method with Double Pistons [J]. Acta Metrologica Sinica, 2021, 42(2):199-203.
[2]王丽, 盛晓岩. 数字式气体活塞式压力计的活塞系统设计[J]. 测控技术, 2012, 31(7):13-15.
Wang L, Sheng X Y. Piston-Cylinder Assembly Design of the Digital Piston Pressure Gauge [J]. Measurement & Control Technology, 2012, 31(7):13-15.
[3]顾世杰, 王鲁, 刘鉴学, 等. 1500MPa可控间隙活塞式压力计研究[J]. 计量学报, 2008, 29(1): 54-59.
Gu S J, Wang L, Liu J X, et al. A Study of Controlled-clearance Deadweight Piston Gauge for Pressure up to 1500MPa[J]. Acta Metrologica Sinica, 2008, 29(1):54-59.
[4]陈光. 超高压国家基准砝码自动加载系统[D]. 上海:上海交通大学, 2017.
[5]Thakur V N , Sharma R , Kumar H, et al. On long-term stability of an air piston gauge maintained at National Physical Laboratory, India[J]. Vacuum, 2020, 176:109357
[6]张国春, 李燕华, 闫小克, 等. 活塞式压力计稳定性研究[J]. 计量技术, 2007(12): 40-43.
[7]Steryios N, Nikos V, Dimitris V, et al. Computation of the effective area and associated uncertainties of non-rotating piston gauges FPG and FRS[J]. Metrologia, 2019, 56(1): 18-39.
[8]孙晓全, 周光, 岑月琴. 活塞式压力计压力形变系数的理论分析[J]. 中国测试, 2020, 46(09):13-18.
Sun X Q, Zhou G, Cen Y Q. Theoretical analysis of pressure distortion coefficients for piston pressure gauges[J]. China Measurement & Test, 2020, 46 (09):13-18.
[8]阮登芳, 许金霞, 高鑫. 活塞弹性变形对活塞二阶运动及裙部润滑特性的影响[J]. 农业工程学报, 2015, 31(4):63-68.
Ruan D F, Xu J X, Gao X. Effects of Liner Elastic Deformation on Piston 2nd-order Motion and Piston Skirt Lubrication Characteristics[J]. Transactions of the Chinese Society of Agricultural Engineering, 2015, 31(4): 63-68.
[9]张遥奇, 曾麟, 陈岳飞. 可控间隙活塞式压力计的理论模型构建及其应用[J]. 中国检验检测, 2020, 28(5):17-20.
[10]张忠立,王灿,林正皓, 等. 基于双向流固耦合技术的活塞式压力计研究[J]. 计量学报, 2021, 42(3): 276-281.
Zhang Z l, Wang C, Lin Z H, et al. Research of Piston Gauge Based on Two-way Fluid-structure Interaction Technique[J]. Acta Metrologica Sinica, 2021, 42(3): 276-281.
[11]GB/T 30432-2013 液体活塞式压力计[S]. 2013.
[12]Singh J, Kumaraswamidhas L A, Bura N, et al. Characterization of a standard pneumatic piston gauge using finite element simulation technique vs cross-float, theoretical and Monte Carlo approaches[J]. Advances in Engineering Software, 2020, 150:102920.
[13]王阳, 齐坤, 徐维钧,等. 活塞式压力计检定和使用中相关问题探讨[J]. 计测技术, 2010, 30(6): 29-31.
Wang Y, Qi K, Xu W J, et al. Investigation of Related Problems in Calibration and Use of the Piston Pressure Gauge[J]. Metrology & Measurement Technology, 2010, 30(6):29-31.
[14]成大先. 机械设计手册[M]. 5版. 北京:化学工业出版社. 2008. |
|
|
|