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Simulation design of a laser-type pressure sensor

机译:激光型压力传感器的仿真设计

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Laser triangulation is a mature and widely used technology. It has advantages of high accuracy, rapid, and non-contact. This paper first applied it to the measurement of pressure, and proposed and designed a laser-type pressure sensor. The sensor measured the center deflection of the circular pressure-sensitive diaphragm using the laser triangulation, then determined the pressure on the diaphragm according to the small-deflection theory. In the aspect of optical system, the sensor used the principle of lens imaging of magnification and constant focus combining with the high-resolution photodetector, which improved the system accuracy effectively. The paper first established the mathematical model of the laser triangulation in view of the high accuracy, small size requirements. Afterward determined the parameters of the diaphragm in light of the linear range and measurement accuracy of the pressure, and did the finite element analysis of the diaphragm using ANSYS. The analysis demonstrates that within the pressure range, meeting the small-deflection theory, the relationship between the pressure and the deflection is nearly linear. The minimum pressure of the sensors designed is 50Pa, the pressure range is 1.4614MPa, and the maximum relative nonlinearity error of the diaphragm is 1.273%.
机译:激光三角测量是一种成熟和广泛的技术。它具有高精度,快速和非接触的优点。本文首先将其应用于压力的测量,并提出并设计了激光型压力传感器。传感器测量使用激光三角测量的圆形压敏隔膜的中心偏转,然后根据小偏转理论确定膜片上的压力。在光学系统的方面,传感器使用了透镜成像的透镜成像的原理和恒定焦点与高分辨率光电探测器组合,从而有效地提高了系统精度。本文首先建立了激光三角测量的数学模型,考虑到高精度,小尺寸要求。随后根据压力的线性范围和测量精度确定隔膜的参数,并使用ANSYS的隔膜的有限元分析。该分析表明,在压力范围内,满足小偏转理论,压力和偏转之间的关系几乎是线性的。设计为50Pa的传感器的最小压力,压力范围为1.4614MPa,隔膜的最大相对非线性误差为1.273%。

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