Finite Element Method (FEM) Analysis for the Design and Optimization of a Cross Floating Valve for Pressure Metrology Applications

S. Rab, S. Yadav, Abid Haleem, Rahul Kumar, R. Sharma, L. Kumar, V. Gupta, A. Zafer
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Abstract

In pressure metrology, cross floating of pressure balances is used for the accurate and precise measurements of pressure. In this method, a nearly perfect balance condition is required between 2 pressure balances used in a common pressure transmission circuit, one as standard and another as device under calibration (DUC). Present paper describes the effect of stress analysis during the simulation in design, optimization and process of development of a manually actuated cross floating valve. Simulation studies have been carried out by using ANSYS software to analyze the behavior of stress, strain, and subsequent deformation. The optimization tool is used to fix all the dimensions according to factor of safety and other design points. The valve thus developed was tested in the pressure range from atmospheric to 2500 bar and the results thus obtained are found excellent.
压力计量用十字浮阀设计与优化的有限元分析
在压力计量中,压力天平的交叉浮动用于精确和精确的压力测量。在这种方法中,在一个普通压力传输电路中使用的两个压力平衡器之间需要一个近乎完美的平衡条件,一个作为标准,另一个作为被校准设备(DUC)。本文介绍了应力分析在手动驱动交叉浮阀的设计、优化和研制过程中的作用。利用ANSYS软件进行了仿真研究,分析了应力、应变和随后的变形行为。利用优化工具根据安全系数和其他设计要点确定所有尺寸。所研制的阀门在大气压至2500bar的压力范围内进行了测试,结果良好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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