基于球陣列的磁阻式時柵位移傳感機理和測量模型研究

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關鍵詞:球陣列;時柵傳感器;磁場約束;直線位移中圖分類號:TH822 文獻標識碼:Adoi:10.37188/OPE.20253308.1212 CSTR:32169.14.OPE.20253308.1212
Abstract: Aiming at the problem that traditional displacement sensors do not balance both long range and high precision,a new displacement measurement method combining the time-grating principle with the magnetoresistive effect based on a spherical array was proposed. The orthogonally changing magnetic field was constructed by using spatial orthogonal excitation windings,and the magnetic field was accurately constraint-controled by the spatial periodic sensing structure. The mapping relationship between magnetoresistance and displacement was established by using induction windings to pick up the change in the magnetic field,which revealed the displacement sensing mechanism.The model parameters were optimized by electromagnetic simulation,the sensor prototype was developed,the experimental platform was built,and the measurement error experiments of the sensor were conducted. The experimental results show that the sensorhasa measurement error of ±9.4μm and a resolution of 0.1μm within the 512mm measurement range.Micrometer scale measurement accuracy is realized using the millimeter scale sensing unit,which greatly reduces the manufacturing dificulty of the sensor. Furthermore,the measurement range can be increased with the requirements of the applications,and its high resolution measurement can be achieved without the interpolation technology. It can be used in harsh environments such as strong oil polution conditions,which promises the significant academic value and engineering application value.
Key words: spherical array;time-grating sensors; magnetic field constraint; linear displacement
1引言
精密位移測量技術及器件是精密加工制造、國防軍工、高端數(shù)控機床等領域的關鍵技術與核心部件[1-3],其性能直接體現(xiàn)一個國家高端裝備的發(fā)展水平。(剩余16752字)