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羟基磷灰石复合材料的制备、烧结与性能

Abstract第5-7页
Chapter. 1. Overview第11-21页
    1. Introduction第11-21页
        1.1. Application of hydroxyapatite and HA composites第12-13页
        1.2. Previous work about hydroxyapatite and composites第13-21页
            1.2.1. HA-polymer composites第13-17页
            1.2.2. HA-inorganic composites第17-18页
            1.2.3. HA-polymer-metals composites第18-19页
            1.2.4. Facing problems第19-20页
            1.2.5. Purpose and plan of work第20页
            1.2.6. Conclusions第20-21页
Chapter. 2. Synthesis and sintering methods第21-32页
    2.1. Synthesis based on Sol-gel process第21-23页
        2.1.1. Characteristics of sol-gel第21-22页
        2.1.2. Organic materials in sol-gel第22页
        2.1.3. Organic-inorganic composites by sol第22-23页
    2.2. Sintering techniques第23-32页
        2.2.1. Self-propagation high temperature synthesis and processing (SHS)第24-26页
        2.2.2. Gas furnace sintering第26-27页
        2.2.3. Microwave sintering第27-29页
        2.2.4. Spark plasma sintering (SPS)第29-32页
Chapter. 3. Fluoridated hydroxyapatite composites with additionof Teflon and aluminum isopropoxide第32-50页
    3.1. Idea of present work第32页
    3.2. Raw materials and experimental procedures第32-34页
    3.3. Phase transformation第34-36页
    3.4. Microstructures第36-44页
    3.5. Mechanical properties第44-47页
    3.6. Chemical reaction process第47-49页
    3.7. Conclusions第49-50页
Chapter.4. Fluoridation of hydroxyapatite by Ti F_4第50-61页
    4.1. Idea of this work第50页
    4.2. Raw materials and experimental procedures第50-52页
    4.3. Composite and phase transformation第52-53页
    4.4. Microstructures第53-56页
    4.5. Densification process第56-59页
    4.6. Chemical reactions process第59-60页
    4.7. Conclusions第60-61页
Chapter.5. Hydroxyapatite-Inorganic composites (Ti F_3)第61-72页
    5.1. Idea of work第61页
    5.2. Raw materials and experimental procedure第61-63页
    5.3. Phase analysis第63-64页
    5.4. Microstructure with sintering第64-66页
    5.5. Effects of sintering parameters on mechanical properties第66-70页
    5.6. Chemical reactions procedure第70-71页
    5.7. Conclusions第71-72页
Chapter. 6. Densification and developing the mechanicalbehavior of hydroxyapatite composites第72-87页
    6.1. Idea of this work第72页
    6.2. Experimental procedure and raw materials第72-74页
    6.3. Phase composition analysis第74-76页
    6.4. Microstructures with sintering第76-81页
    6.5. Effect of sintering temperature on mechanical behavior第81-84页
    6.6. Chemical reactions第84-86页
    6.7. Conclusions第86-87页
Chapter. 7. Overall Conclusions and future prospectus第87-90页
References第90-101页
Acknowledgement第101-102页
Relevant publications by the author第102页

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