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铝热反应法制备的微纳结构304/316L不锈钢的TEM和HRTEM表征

摘要第7-8页
Abstract第8页
Chapter 1 Introduction第10-24页
    1.1 Bulk nanostructured materials第10页
    1.2 Fabrication of Bulk Nano Crystalline Alloys第10-16页
        1.2.1 "Bottom-up" Approaches to fabricate bulk nanocrystalline alloy第11页
        1.2.2 "Top-down" Approaches to fabricate bulk nanocrystalline alloy第11-14页
            1.2.2.1 Cryomilling第11-13页
            1.2.2.2 Equal-channel angular pressing (ECAP)第13-14页
        1.2.3 Thermite reaction melting process第14-16页
    1.3 Deformation mechanisms in bulk nanostructured metals第16-18页
        1.3.1 Full/partial dislocation emission from grain boundaries第16页
        1.3.2 Deformation twinning第16-17页
        1.3.3 Grain boundary grain rotation第17页
        1.3.4 Stress-coupled grain boundary migration第17-18页
    1.4 Microstructure of bulk nanostructured metals第18-19页
        1.4.1 Dislocation density第18页
        1.4.2 Grain boundary misorientations第18-19页
    1.5 Characterization of stainless steel第19-22页
        1.5.1 Transmission electron microscopy (TEM) imaging第19-21页
        1.5.2 High Resolution Transmission electron microscopy第21-22页
    1.6 Thesis structure第22-24页
Chapter 2 Effect of different rolling thickness reduction on Microstructures of Stainless Steel contained of 5%Fe_2O_3 Prepared by Aluminothermic Method第24-38页
    2.1 Experiment procedure第24-26页
        2.1.1 Specimen preparation第24-25页
        2.1.2 Microstructure characterization第25-26页
    2.2 Experimental Results and Discussion第26-32页
    2.3 Discussion第32-37页
    2.4 Summary第37-38页
Chapter 3 Effect of rolling with different thickness reduction and then followed Annealing with different Time on Microstructures of 304 Stainless Steel Prepared by AluminothermicMethod第38-46页
    3.1 Experiment procedure第38页
    3.2 Experimental Results第38-42页
    3.3 Discussion第42-45页
    3.4 summary第45-46页
Chapter 4 Effect of different rolling thickness reduction and Annealing Time onMicrostructures of 316L Stainless Steel Prepared by Aluminothermic Method第46-60页
    4.1 Experiment procedure第46-47页
    4.2 Experimental Results第47-56页
    4.3 Discussion第56-59页
    4.4 Summary第59-60页
Conclusion第60-61页
References第61-65页
Acknowledgements第65页

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