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    1. Juridik
    2. Särskilda rättsområden
    3. Socialrätt och hälso- och sjukvårdsrätt
    4. Hälso- och sjukvårdsrätt

    Magnesium and Its Alloys as Implant Materials

    Corrosion, Mechanical and Biological Performances

    AvMirco Peron,Filippo Berto

    Inbunden, Engelska, 2020

    2 434 kr

    Beställningsvara. Skickas inom 10-15 vardagar. Fri frakt över 249 kr.

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    Häftad

    729 kr

    Beskrivning

    Despite their tremendous potential, Mg and its alloys are not yet used in biomedical applications. This book aims to provide scientific insights into the challenges of the materials, and give an overview of the research regarding their mechanical properties, corrosion behaviour and biological performances. The authors intend to put the reader into the position to accurate discern the proper Mg-based material for his/her applications and to choose the proper improvement strategy to his/her cause. To this aim, the manuscript is structured as follow: in Section 2, the main challenges hampering the use of magnesium in biomedical applications and the common improvement strategies are listed. In Section 3, the most investigated Mg alloys are reported in separate sub-sections, detailing their mechanical properties, corrosion behaviour and biotoxicity. High-pure and ultra-high-pure Mg, Al-based Mg alloys, Zn-based Mg alloys, Ca-based alloys and RE-based Mg alloys have been considered. In Section 4, the alloys’ performances with respect to the challenges is summarized providing the reader with useful information and suggestions on the potentially most suited choice. Finally, in Section 5, an outlook portraying the authors’ opinion of the future development of the field will be provided. This book will allow biomedical engineers, surface scientists, material scientists, implant manufacturers and companies working on implant approval an overview of the state-of-the-art technologies adopted so far to overcome the drawbacks of Mg for biomedical applications. Particular emphasis is put on explaining the link between mechanical, corrosion and biocompatible properties of Mg and its alloys as well as their pros and cons. In doing so, the authors intend to put the reader into the position to accurate discern the proper Mg-based material for his/her applications and to choose the proper improvement strategy to his/her cause.

    Produktinformation

    • Utgivningsdatum:2020-04-07
    • Mått:156 x 234 x 15 mm
    • Vikt:417 g
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:180
    • Förlag:Taylor & Francis Ltd
    • ISBN:9780367429454

    Utforska kategorier

    • Hälso- och sjukvårdsrätt inom Juridik
    • Biomedicinsk teknik inom Medicin
    • Maskinteknik och material inom Naturvetenskap och teknik

    Mer om författaren

    Mirco Peron earned his degree in mechanical engineering (summa cum laude)in 2015 from the University of Padova, where his thesis evaluated the fatiguedamage and stiffness evolution in composite laminates. He is currently a PhDstudent at Norwegian University of Science and Technology (NTNU), Trondheim.His PhD topic deals with the optimization of mechanical and corrosionproperties of magnesium and its alloys for biomedical applications, with particularreference to the corrosion-assisted cracking phenomena.Filippo Berto is Chair of Structural Integrity at the Norwegian University ofScience and Technology in Norway. He is in charge of the Mechanical andMaterial Characterization Lab in the Department of Mechanical and IndustrialEngineering. He is author of more than 500 technical papers, mainlyoriented to materials science engineering, the brittle failure of different materials,notch effect, the application of the finite element method to the structuralanalysis, the mechanical behavior of metallic materials, the fatigue performanceof notched components as well as the reliability of welded, bolted andbonded joints. Since 2003, he has been working on different aspects of thestructural integrity discipline, by mainly focusing attention on problemsrelated to the static and fatigue assessment of engineering materials with particularattention to biomedical and medical applications and materials.Jan Torgersen is Professor of mechanical engineering at NTNU, Trondheim.He received his PhD from Vienna University of Technology, where he workedon high-resolution laser microfabrication of hydrogels for tissue engineering.He was pioneering in the work of processing hydrogel formulations at micronscale resolution in vivo, in the presence of living cells and whole organisms.He received a postdoctoral fellowship to work on a nanoscale vapor depositiontechnique called atomic layer deposition, allowing conformal coating ofthermally fragile and nanostructured substrates with atomically thin layers ofa wide range of materials. He contributed to the development of a selflimitingdeposition process for high-k materials for Dynamic Random AccessMemory (DRAM) applications. His current research interests are micro- andnanofabrication as well as surface functionalization, with particular focus onbiomedical applications.

    Innehållsförteckning

    • ContentsList of Abbreviations ........................................................................................ ixAuthors........................................................................................................... xiiiChapter 1 Introduction................................................................................... 11.1 Introduction ...........................................................................1References.......................................................................................4Chapter 2 Challenges and Common Strategies ............................................... 92.1 Introduction ...........................................................................92.2 Corrosion Mitigation Strategies..............................................92.2.1 Impurities Removal.................................................. 102.2.2 Alloying ................................................................... 112.2.3 Grain Size Modification........................................... 112.3 Mechanical Properties Tuning .............................................. 142.3.1 Grain Refinement .................................................... 152.3.2 Solid Solution Strengthening ................................... 162.3.3 Precipitation Hardening........................................... 162.4 Interplay among Mechanical Properties, CorrosionResistance and Biocompatibility........................................... 17References..................................................................................... 17Chapter 3 Synopsis of Properties of Biocompatible Mg and Its Alloys......... 213.1 Introduction ......................................................................... 213.2 High-Pure Magnesium.......................................................... 213.2.1 High-Pure Magnesium: Mechanical Properties........ 213.2.2 High-Pure Magnesium: Corrosion Resistance.......... 233.2.3 High-Pure Magnesium: Biocompatibility................. 243.3 Aluminum-Based Alloys ....................................................... 263.3.1 AZ Alloys ................................................................ 283.3.1.1 AZ Alloys: Mechanical Properties ............. 283.3.1.2 AZ Alloys: Corrosion Resistance ............... 303.3.1.3 AZ Alloys: Biocompatibility ...................... 333.3.2 AM Alloys ............................................................... 333.3.2.1 AM Alloys: Mechanical Properties ............ 353.3.2.2 AM Alloys: Corrosion Resistance .............. 363.3.2.3 AM Alloys: Biocompatibility ..................... 393.3.3 Mg–Al–RE Alloys ................................................... 393.3.3.1 Mg–Al–RE Alloys: MechanicalProperties ................................................... 403.3.3.2 Mg–Al–RE Alloys: CorrosionResistance .................................................. 423.3.3.3 Mg–Al–RE Alloys: Biocompatibility ......... 443.4 Mg–Zn Alloys....................................................................... 453.4.1 Mg–Zn Binary Alloys .............................................. 463.4.1.1 Mg–Zn Binary Alloys: MechanicalProperties ................................................... 473.4.1.2 Mg–Zn Binary Alloys: CorrosionResistance .................................................. 473.4.1.3 Mg–Zn Binary Alloys: Biocompatibility .... 493.4.2 Mg–Zn–Zr Alloys .................................................... 533.4.2.1 Mg–Zn–Zr Alloys: MechanicalProperties ................................................... 533.4.2.2 Mg–Zn–Zr Alloys: CorrosionResistance .................................................. 543.4.2.3 Mg–Zn–Zr Alloys: Biocompatibility .......... 593.4.3 Mg–Zn–Ca Alloys ................................................... 623.4.3.1 Mg–Zn–Ca Alloys: MechanicalProperties ................................................... 633.4.3.2 Mg–Zn–Ca Alloys: CorrosionResistance .................................................. 663.4.3.3 Mg–Zn–Ca Alloys: Biocompatibility ......... 673.4.4 Mg–Zn–Ca BMGs................................................... 683.4.4.1 Mg–Zn–Ca BMGs: MechanicalProperties ................................................... 703.4.4.2 Mg–Zn–Ca BMGs: Corrosion Resistance.. 713.4.4.3 Mg–Zn–Ca BMGs: Biocompatibility......... 723.4.5 Mg–Zn–Mn Alloys .................................................. 733.4.5.1 Mg–Zn–Mn Alloys: MechanicalProperties ................................................... 753.4.5.2 Mg–Zn–Mn Alloys: CorrosionResistance .................................................. 783.4.5.3 Mg–Zn–Mn Alloys: Biocompatibility ........ 823.4.6 Mg–Zn–RE Alloys................................................... 833.4.6.1 Mg–Zn–RE Alloys: MechanicalProperties ................................................... 863.4.6.2 Mg–Zn–RE Alloys: CorrosionResistance .................................................. 883.4.6.3 Mg–Zn–RE Alloys: Biocompatibility......... 913.5 Mg–Ca Alloys....................................................................... 913.5.1 Mg–Ca Alloys: Mechanical Properties..................... 923.5.2 Mg–Ca Alloys: Corrosion Resistance ...................... 983.5.3 Mg–Ca Alloys: Biocompatibility............................ 1013.6 Mg–RE Alloys.................................................................... 1023.6.1 Mg–RE Alloys: Mechanical Properties .................. 1063.6.2 Mg–RE Alloys: Corrosion Resistance.................... 1083.6.3 Mg–RE Alloys: Biocompatibility........................... 112References................................................................................... 116Chapter 4 Tackling the Challenges ............................................................. 1454.1 Introduction ....................................................................... 1454.2 Radar Chart: An Easy Tool to Compare Corrosion,Mechanical and Biological Performances ........................... 145Reference .................................................................................... 147Chapter 5 Outlook...................................................................................... 149Reference .................................................................................... 149Appendix A: Corrosion ................................................................................... 151Appendix B: In Vitro Biocompatibility Assessment ......................................... 161Index.............................................................................................................. 165