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3-D Finite Element Modelling of a High Pressure Strain Gauge Pressure Transducer

机译:高压应变计压力传感器的3D有限元建模

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摘要

The scope of this study is a review of the studies on the pressure transducers designed at the TUEBITAK-UME by utilizing Finite Element Method (FEM) for stress and strain analysis to optimize the design parameters prior to the construction of the pressure transducer prototypes. The constructed and investigated pressure transducer, has a free hardened AISI 4340 steel active element. Hydraulic gauge pressure is applied to the inside and both open ends of this active element. The FEM analysis was conducted by investigating one half of the element in three dimensions and realized at three different pressure values of 60, 100 and 150 MPa. This study presents the FEM output stress and strain values. The validity of those values was established by comparing them with the results obtained from the strain gauge measurements. The relative difference between the two value sets was determined as being lower than 13% of the full scale. The presented results will be helpful for the appropriate design of this kind of pressure transducers using FEM.
机译:本研究的范围是对在TUEBITAK-UME设计的压力传感器的研究的回顾,该研究通过在构造压力传感器原型之前利用有限元方法(FEM)进行应力和应变分析来优化设计参数。经过构造和研究的压力传感器具有自由硬化的AISI 4340钢制活动元件。液压表压施加到该活动元件的内部和两端。通过在三个维度上研究元件的一半来进行FEM分析,并在60、100和150 MPa的三个不同压力值下实现了有限元分析。这项研究提出了有限元输出应力和应变值。通过将它们与应变仪测量结果进行比较,可以确定这些值的有效性。确定这两个值集之间的相对差异低于满刻度的13%。提出的结果将有助于采用FEM的这种压力传感器的适当设计。

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