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Fe-Ga合金磁致伸縮力傳感器磁化模型建立與特性分析
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國家自然科學(xué)基金資助項(xiàng)目(51205293、51175395)、浙江省“錢江人才計劃”D類計劃資助項(xiàng)目(QJD1302003)和廣西制造系統(tǒng)與先進(jìn)制造技術(shù)重點(diǎn)實(shí)驗(yàn)室開放基金資助項(xiàng)目(11—031—12S06)


Magnetization Model of Fe-Ga Magnetostrictive Force -Sensor and Its Characteristics
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    摘要:

    磁致伸縮力傳感器依靠材料磁化強(qiáng)度的改變來表征外部力載荷的大小,,研究了基于Fe-Ga合金磁致伸縮逆效應(yīng)的力傳感模型,采用三維有限元方法對力傳感磁路進(jìn)行了優(yōu)化與設(shè)計,。為了研究不同磁場和負(fù)載對材料磁化強(qiáng)度的影響,以均質(zhì)能量公式為基礎(chǔ),,在均質(zhì)能量公式中引入以應(yīng)力和磁場為自變量的吉布斯自由能函數(shù),,建立了描述合金磁化強(qiáng)度隨應(yīng)力變化關(guān)系的模型。為對模型進(jìn)行驗(yàn)證,,建立了一套磁致伸縮力傳感特性測試系統(tǒng),,分別對Fe-Ga合金和Terfenol-D力傳感特性進(jìn)行測試與對比,驗(yàn)證試驗(yàn)表明所建立的模型可以較好預(yù)測磁化強(qiáng)度的變化,,并且可以預(yù)測偏置磁場的影響,。在Fe-Ga合金與Terfenol-D的對比試驗(yàn)中發(fā)現(xiàn),F(xiàn)e-Ga合金對偏置磁場更為敏感,,并且磁滯非線性較Terfenol-D更小,,由于無退火應(yīng)力,Terfenol-D在偏置較低時出現(xiàn)負(fù)方向的磁化強(qiáng)度,。

    Abstract:

    The magnetization model of a magnetostrictive force sensor was studied based on Fe-Ga alloy. The magnetic path of the sensor was optimized with 3D finite element method. Simulation results showed that the field distribution became linear when the magnetic path was optimized. In order to analyze the influence of biased field and loaded stress on material magnetization, the magnetization model was developed based on the homogeneous energy equation. The magnetic field and stress were taken as the independent variables in the Gibbs free energy formula thus the model could respond to both field and stress. The model was numerically solved using Newtons iteration method. In order to verify the model, a testing system was developed and both Fe-Ga alloy and Terfenol-D were tested. Comparisons of simulations and experiments showed that the proposed model could predict the changing of the magnetization properly. The influence of the biased field could be predicted as well. Comparisons of Fe-Ga alloy and Terfenol-D showed that Fe-Ga was more sensitive to the biased field and the hysteresis nonlinearity was lower than Terfenol-D. Since there is no annealed stress in Terfenol-D, it is observed negative magnetization when the material is subjected to cyclic stress with low biased field.

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舒亮,李傳,吳桂初,陳定方. Fe-Ga合金磁致伸縮力傳感器磁化模型建立與特性分析[J].農(nóng)業(yè)機(jī)械學(xué)報,2015,46(5):344-349. Shu Liang, Li Chuan, Wu Guichu, Chen Dingfang. Magnetization Model of Fe-Ga Magnetostrictive Force -Sensor and Its Characteristics[J]. Transactions of the Chinese Society for Agricultural Machinery,2015,46(5):344-349.

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  • 收稿日期:2015-01-05
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  • 在線發(fā)布日期: 2015-05-10
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