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A comparative approach for the characterization of a pneumatic piston gauge up to 8 MPa using finite element calculations

机译:一种使用有限元计算最多8MPa的气动活塞仪表征的比较方法

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摘要

This paper reports the behavior of a well-characterized pneumatic piston gauge in the pressure range up to 8 MPa through simulation using finite element method (FEM). Experimentally, the effective area of this piston gauge has been estimated by cross-floating to obtain A0 and λ. The FEM technique addresses this problem through simulation and optimization with standard commercial software (ANSYS) where the material properties of the piston and cylinder, dimensional measurements, etc are used as the input parameters. The simulation provides the effective area Ap as a function of pressure in the free deformation mode. From these data, one can estimate Ap versus pressure and thereby Ao and λ. Further, we have carried out a similar theoretical calculation of Ap using the conventional method involving the Dadson's as well as Johnson–Newhall equations. A comparison of these results with the experimental results has been carried out.
机译:通过使用有限元方法(FEM)进行仿真,本文报告了一种性能良好的气动活塞式压力计在高达8 MPa的压力范围内的行为。实验上,已经通过交叉浮动估算了该活塞式量规的有效面积,以获得A0和λ。 FEM技术通过使用标准商业软件(ANSYS)进行仿真和优化来解决此问题,该软件将活塞和气缸的材料特性,尺寸测量等用作输入参数。模拟在自由变形模式下提供有效面积Ap作为压力的函数。根据这些数据,可以估算Ap与压力的关系,从而估算出Ao和λ。此外,我们使用涉及Dadson方程和Johnson-Newhall方程的常规方法,对Ap进行了类似的理论计算。将这些结果与实验结果进行了比较。

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