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Fe-Ga合金微結(jié)構(gòu)與磁致伸縮的關(guān)系研究

發(fā)布時(shí)間:2025-05-04 18:12
  固溶體型Fe-Ga磁致伸縮材料具有低場(chǎng)大磁致伸縮特性,與具有本征脆性的化合物型REFe2相比,具有更好的延展性和溫度穩(wěn)定性,因此在致動(dòng)器、傳感器和換能器等領(lǐng)域具有更好的應(yīng)用前景,是近20年來磁致伸縮材料領(lǐng)域的研究熱點(diǎn)。由于Fe-Ga合金具有結(jié)構(gòu)多樣性,且平衡態(tài)與亞穩(wěn)態(tài)的結(jié)構(gòu)差異巨大,因此磁致伸縮性能對(duì)熱歷史非常敏感。然而,這種熱歷史敏感性的微結(jié)構(gòu)根源富有極大爭(zhēng)議,成為該合金大磁致伸縮效應(yīng)發(fā)現(xiàn)20年以來仍未解決的一個(gè)基礎(chǔ)問題。為此,本文選擇具有磁致伸縮峰值的成分Fe81Ga19進(jìn)行研究,通過改變熱處理?xiàng)l件,采用X射線衍射、透射電子顯微鏡、光學(xué)顯微鏡、磁性測(cè)量和力學(xué)性能測(cè)試等手段,系統(tǒng)研究介于亞穩(wěn)和平衡態(tài)之間中間態(tài)的微結(jié)構(gòu)和磁致伸縮性能差異,揭示了熱歷史敏感性的微結(jié)構(gòu)根源,并在此基礎(chǔ)上提出了進(jìn)一步提高磁致伸縮性能的策略。主要結(jié)果如下:首先,揭示了Fe-Ga合金磁致伸縮熱歷史敏感性的微結(jié)構(gòu)根源。已有的研究表明,慢冷Fe-Ga合金的磁致伸縮性能遠(yuǎn)低于高溫淬火態(tài),將其歸因于慢冷過程中形成了對(duì)磁致伸縮有害的D03有序相。然而,我們的對(duì)比研究表明,Fe81Ga19多晶樣品慢冷至A2固溶線附近溫度再淬火...

【文章頁數(shù)】:125 頁

【學(xué)位級(jí)別】:博士

【文章目錄】:
Acknowledgement
Dedication
Abstract
摘要
1 Introduction
    1.1 Background
    1.2 Magnetostriction and the proposed mechanisms for Fe-Ga alloy
    1.3 Investigations on the thermal history sensitivity of magnetostriction
    1.4 Motivation
2 Experimental Techniques
    2.1 Sample Preparation and heat-treatments
        2.1.1 Preparation of polycrystalline sample
        2.1.2 Heat-Treatments
    2.2 Microstructure Characterizations
        2.2.1 X-ray diffraction (XRD)
        2.2.2 Transmission Electron Microscopy (TEM)
    2.3 Magnetic measurements
    2.4 Mechanical tests
3 Microstructural origin of the thermal history sensitivity in slowly cooled FesiGai9
    3.1 Introduction
    3.2 Experimental Procedure
    3.3 Results and Discussion
        3.3.1 Magnetostrictive Properties
        3.3.2 Microstructure
        3.3.3 Discussion
    3.4 Conclusion
4 Search for maximum magnetostriction in Fe81Ga19 by quenching above and below thedecomposition phase boundary
    4.1 Introduction
    4.2 Experimental Procedure
    4.3 Results and discussion
        4.3.1 Magnetostrictive properties
        4.3.2 Microstructure
        4.3.3 Mechanical Properties
        4.3.4 Discussion
    4.4 Conclusions
5 Enhanced magnetostriction of Fe81Ga19 hot-rolled sheets by approaching an instablephase boundary
    5.1 Introduction
    5.2 Experimental Procedure
    5.3 Results and Discussion
    5.4 Conclusions
6 Conclusions and Perspectives
    6.1 Conclusions
    6.2 Perspectives
References
Publication list
Curriculum vitae



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