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Hot Deformation Behavior of NiTinol and Its Application in Tube Extrusion

Abstract第5-7页
1 Introduction第10-37页
    1.1 General introduction of research第10-15页
        1.1.1 The motivation and purpose of this research第10-13页
        1.1.2 Objectives and arrangement of research第13-14页
        1.1.3 Innovations of current report第14-15页
    1.2 Technical background第15-37页
        1.2.1 Shape memory alloys and shape memory properties第15-16页
        1.2.2 Ti-Ni based shape memory alloys第16-18页
        1.2.3 Hot deformation and hot extrusion第18-37页
2 Experimental procedure第37-43页
    2.1 Material第37页
    2.2 Uniaxial compression test at elevated temperatures第37-38页
    2.3 Microstructure and mechanical properties tests第38-40页
    2.4 Finite element analyses and application in extrusion第40-43页
3 Flow stress behavior of NiTinols第43-63页
    3.1 General flow stress behaviors第43-50页
        3.1.1 Correction of deformation-heating and friction第43-48页
        3.1.2 Key points of flow stress curve第48-50页
    3.2 Constitutive models for flow stress curves第50-52页
    3.3 Effect of composition on the flow stress behavior第52-62页
        3.3.1 Effect on the stress-strain curve第52-57页
        3.3.2 Effects on activation energy (Q)第57-62页
    Summary第62-63页
4 Dynamic recrystallization mechanism of NiTinols第63-88页
    4.1 Dynamic recrystallization mechanism of TiNiFe第63-70页
        4.1.1 Initial microstructure and deformation conditions第63页
        4.1.2 Deformation microstructure of TiNiFe alloy第63-68页
        4.1.3 Dynamic recrystallization model of TiNiFe alloy第68-70页
    4.2 Microstructure observation of TiNi_(50.8) and NiTiNb第70-78页
        4.2.1 Microstructure observation of TiNi_(50.8)第70-75页
        4.2.2 Microstructure observation of TiNiNb第75-78页
    4.3 Features of TiNi_(50.8) and TiNiNb第78-80页
    4.4 DRX mechanism of NiTinols第80-87页
        4.4.1 Dominated DRX mechanism of NiTinols第80-82页
        4.4.2 Effects of solution and second phase on the CDRX in NiTinols第82-84页
        4.4.3 Effect of solution and second phase on DDRX第84-87页
    Summary第87-88页
5 Design optimization by processing map and FEM simulation第88-102页
    5.1 Processing map application on NiTinols第88-94页
        5.1.1 Generation of NiTinol processing map第88-90页
        5.1.2 Interpretation of the processing map第90-94页
            5.1.2.1 Microstructure observation with process map analysis第90-93页
            5.1.2.2 Applied to hot working windows第93-94页
    5.2 Finite Element Method simulation of NiTinol extrusion第94-99页
        5.2.1 FEM model development第95-96页
        5.2.2 Forward direction simulation analysis第96-99页
    5.3 Effects and optimizations of extrusion operating第99-101页
    Summary第101-102页
6 Microstructure evolution of NiTinol extrusion- an experimental study第102-116页
    6.1 Extrusion operating and samplings第102-107页
        6.1.1 Information of extrusion procedure第102-105页
        6.1.2 Extrusion load第105页
        6.1.3 Extrusion operating and sampling position第105-107页
    6.2 Microstructure observation第107-115页
        6.2.1 Microstructure evolution analysis第107-112页
        6.2.2 Mechanical properties of extruded tube第112-113页
        6.2.3 Microstructure evolution analysis and discussion第113-115页
    Summary第115-116页
7 Conclusions and future work第116-119页
    7.1 Conclusions of current research第116-117页
    7.2 Future work第117-119页
References第119-130页
Appendix of chapter 3第130-132页
Publications and Patents第132-133页
Acknowledgements第133页

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