Surface Analysis of Silicate Glass in Understanding Mechanochemical Wear Process, Corrosion Behavior and Vibrational Properties

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Book Synopsis Surface Analysis of Silicate Glass in Understanding Mechanochemical Wear Process, Corrosion Behavior and Vibrational Properties by : Hongshen Liu

Download or read book Surface Analysis of Silicate Glass in Understanding Mechanochemical Wear Process, Corrosion Behavior and Vibrational Properties written by Hongshen Liu and published by . This book was released on 2021 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Surface properties govern numerous performances of silicate glass, such as mechanical strength, chemical durability and optical properties. Soda lime silicate (SLS) is the key commodity glass material applied for architecture and decoration, automotive windshields, photovoltaic cover panels and so on. In these applications, glass surface defects made by physical contacts of foreign objects seriously compromise the practical strength or durability of glass products. Therefore, it is of significant importance to investigate the surface damage modes to prevent the defects formation and propagation, as well as develop comprehensive understanding of surface properties of silicate glass to optimize its practical performance. Surface damage induced by foreign contact can be generally investigated by two categories, by normal indentation and by tangential shear. Recently, it has been reported a peculiar humidity-dependent surface wear process of SLS glass induced by tangential shear. Specifically, soda lime silicate glass exhibited superior resistance to wear at high humidity in shear-induced tribological test. To enhance mechanical properties, SLS glass panels are often thermally tempered or chemically strengthened. The mechanical properties are improved by compressive stress formation on the glass surface during such processes. However, it was showed that the mechanically strengthened SLS glass demonstrated deteriorated resistance against mechanochemical wear in tribo-test performed at high humidity. To better understand the stress effect on mechanochemical wear behavior without introducing alteration of surface chemistry, stress was created by external force on soda lime silicate glass surface in this dissertation. Flexural bending was applied to generate tensile stress and compressive stress on SLS glass surface to understand their effect on mechanochemical wear behavior and other surface properties. It was found that compressive stress on the surface impaired the wear resistance behavior of SLS glass at high humidity while tensile stress did not alter the superior resistance to wear. In mechanical response, SLS glass formed with compressive stress was more susceptible to plastic deformation upon normal indentation while SLS with tensile stress stayed unaltered compared to stress-free SLS. Such increased tendency towards plastic deformation and mechanochemical wear at high humidity were proposed to be associated with greater Si-O bond strain in the silicate network induced by compressive stress. Moreover, the wear resistance behavior at high humidity of silicate glass is related with compositions of glass network. Previous work showed that such resistance to wear at high humidity was uniquely observed for soda lime silicate glass among many types of silicate glasses tested. In this dissertation, investigation was carried out to understand the composition effect, specifically effect of modifier contents in sodium calcium aluminosilicate (NCAS) glass series, on mechanochemical wear behavior. A series of sodium calcium aluminosilicate glass with various CaO to Na2O ratio were applied for this study. It was observed that the silicate glass comprising both sodium and calcium ions with sufficient content exhibited resistance to mechanochemical wear at high humidity. For silicate glass that has only sodium ion or calcium ion, the resistance to wear at high humidity was not observed. The result indicated that wear resistance behavior at high humidity was affected by mixed modifiers effect (MME) in silicate glass. Further, vibrational properties revealed by IR spectroscopy also demonstrated MME on the aspect of frequency of Si-O-Si stretching vibrational band. Upon aqueous corrosion, it was found that the resistance to aqueous corrosion was improved with increased calcium content in the glass system. The chemical durability of NCAS glass was investigated by both surface structure alteration and leached layer thickness, probed by IR spectroscopy and x-ray photoelectron spectroscopy (XPS), respectively. Intrinsically, mechanochemical wear process induced by tangential shear was related to chemical reaction between Si-O-Si bond in silicate network and hydrous species in ambient environment. It is important to investigate the dynamic interaction between silicate glass and hydrous species to contribute to the understanding of this complicated process. Mixed alkaline earth effect (MAEE) on chemical durability was investigated by a series of borosilicate glass with varied CaO to MgO ratio in the glass system. Borosilicate glasses comprising a variety of modifiers were widely used for pharmaceutical application. The understanding of dependence of chemical durability on mixed modifiers is vital to ensure safety usage in medicine storage and distribution. In this dissertation, a weak MAEE on chemical durability of borosilicate glass was demonstrated in terms of the thickness of the dissolution layer as well as the re-organization of surface structure. Moreover, chemical durability of silicate glass has a particularly crucial application on long-term storage of radioactive waste glass. In this dissertation, the initial surface state effect on aqueous corrosion was investigated by international simple glass (ISG), a boroaluminosilicate glass. The ISG was prepared separately as polished-only and polished-then-annealed before corrosion treatment. Only slight difference in surface elements was found of ISG prepared in two different approaches. However, such small difference led to large impacts on corrosion behavior under the mild corrosion condition, on silicate structure, hydrous species, surface elements and surface roughness. The effect was found less significant under the accelerated harsh corrosion condition. Moreover, the structural properties of silicate glass were commonly acquired by vibrational spectroscopies, such as infrared and Raman spectroscopies. A plethora of papers reporting variations in IR and Raman spectral features of silicate glass upon changes of glass compositions, thermal histories, mechanical stresses, and other surface treatments. However, the interpretations of such spectral features were often not clear and the fundamental physical principles in describing vibrational modes of amorphous glass networks were not well-established. In this dissertation, we demonstrated the investigation of vibrational features in correlation with structural parameters of sodium silicate glass with employing molecular dynamics (MD) simulation. One of the main findings was that the weighted average of position of asymmetric Si-O-Si stretch vibration in IR spectra is better correlated with averaged Si-O bond length in the glass network, rather than the bond angle of Si-O-Si, as sodium content varied in the silicate glass. Our study also raised concerns of previous vibrational assignments in relating the Si-O-Si stretching band with the Qn speciation and relating Si-O-Si bending band with (SiO)n rings of silicate glass in Raman spectra. The limitation of previous vibrational calculation was discussed and the new critical insights from the modern studies were described in correlating vibrational spectral features with structural parameters of silicate glass. Further, a systematic review of vibrational spectroscopies was performed of silica and silicate glass on the aspect of historic origins of currently widely-used spectral interpretation models, insights and limitations of those theoretical calculations and established models, and recent advances with computational approaches in understanding of vibrational spectral features of disordered networks.

Atomistic-simulations of Silicate Glasses

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Book Synopsis Atomistic-simulations of Silicate Glasses by : Seung Ho Hahn

Download or read book Atomistic-simulations of Silicate Glasses written by Seung Ho Hahn and published by . This book was released on 2020 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Silicate-based glasses are one of the most versatile materials in terms of technological perspective with a wide range of industrial applications. In most cases, glass products are exposed to various aqueous environments (either humid air or liquid water) and subject to physical contact with foreign objects, which leads to deterioration of chemical and mechanical properties of glass surfaces. Therefore, understanding their interactions with adsorbed interfacial water molecules is critical as it can provide physical insights needed for rational design of more durable glasses. Experimental characterization approaches have been applied to tackle difficult problems associated with the complex nature of glass surfaces but they are often limited by the time-scale resolution. As a result, they have failed to offer important structural characteristics and chemical reaction mechanisms under dynamic processes happening at the glass surface. To complement the challenges that experimental endeavors are encountering, this dissertation aims to provide a comprehensive understanding of water interactions of silicate glass surfaces using atomistic-scale simulations techniques. In particular, ReaxFF reactive force field-based molecular dynamics (MD) simulations are employed to study two distinct surface phenomena, i) surface water reaction and ii) surface mechanochemical wear process. These studies represent the surface damage process of silicate glass in the absence and presence of mechanical actions, respectively. The first part of this dissertation describes the water interactions of a silicate glass with readily leachable alkali (sodium) ions. In this study, highly complex surface chemistry, including proton/water exchange with the sodium ions, formation of relatively long-living sodium-hydroxide ionic complexes at the glass surface and eventual dissolution of those ion pairs into the water phase are described. Also, surface mapping of water binding energy to the glass surface is evaluated at different stages of the glass-water reaction, which would be relevant to assess the chemical durability of the glass materials based on the glass network topology. After the transport behavior and glass-water reaction mechanism at the surface has been identified, the mechanochemical wear process of sodium silicate glass rubbed with amorphous silica in the absence and presence of interfacial water molecules is covered in the second part of this dissertation. The effect of water molecules on the shear-induced chemical reaction at the sliding interface was investigated and the dependence of wear on the number of interfacial water molecules in ReaxFF-MD simulations was found to be qualitatively in reasonable agreement with the experimental data. The large-scale atomistic simulation approaches with ReaxFF reactive force field presented in this dissertation alleviates the limitations of DFT calculations and experiments, providing new and meaningful insights on the chemical dynamics associated within the glass-water interface.

Understanding Shear-induced Hydrolysis Reactions on Soda Lime Silica Glass Surface

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Book Synopsis Understanding Shear-induced Hydrolysis Reactions on Soda Lime Silica Glass Surface by : Jiawei Luo

Download or read book Understanding Shear-induced Hydrolysis Reactions on Soda Lime Silica Glass Surface written by Jiawei Luo and published by . This book was released on 2018 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Soda lime silica (SLS) glass is the most widely used glass materials in terms of mass in windows, glass bottles & containers, etc. One of the biggest challenge for SLS glass is its brittleness or prone to be damaged at ambient conditions. One important reason is that cracks propagation on SLS glass surface can be significantly accelerated by tensile stress induced corrosion reactions of amorphous silicate network, which breaks the Si-O-Si bonds to form two silanol groups, known as stress corrosion effect. It has also been found that stress corrosion reactions are faster with the increase of relative humidity (RH). The propagation of cracks will eventually lead to the failure of SLS glass. However, very little is known on the reactions between glass and water in the environment induced by interfacial shear, which results in the removal of SLS glass. Recently, it has been found that SLS glass shows unique response to interfacial shear in humid conditions through a ball-on-flat wear test. For most of the commercial flat glasses, including silica, borosilicate glasses, boroaluminosilicate glasses and aluminosilicate glasses, the amount of wear will increase as the humidity level increases. Only SLS glass shows wear resistance at high relative humidity. It is found that shear-induced hydrolysis reactions take place on SLS glass surface for medium and low RH conditions. Then this shear-induced hydrolysis reaction must be suppressed or have similar reaction rates of its reverse reactions (condensation of silanols) at high RH. One hypothesis is that Na+/H+ + H2O exchange could take place at high RH, which creates surface residual compressive stress at the meantime. Compressive stress which could lower the effective tensile stress on glass surface, is believed to stabilize or hinder the propagation of cracks. Then the amount of wear could also be lowered if the applied stress is not large enough to induce hydrolysis reactions. To test this hypothesis and explore the factors that govern the shear-induced reactions on SLS glass surface, effects of different structural units, surface mechanical properties and compressive stress, Na+/H+ + H2O exchange are investigated in this dissertation. It should be noted that these factors cannot be easily isolated. Therefore, multiple different treatments need to be performed to modify the surface chemical structures of SLS glass. These surface treatments include hydrothermal reactions, leaching in acid solution, thermal poling in controlled environment, ion-exchange with KNO3. The governing factors are determined through correlating the changes in surface chemical structure, mechanical properties with the wear behavior. It is found that surface mechanical properties, compressive stress and alteration layers created by Na+/H+ + H2O exchange are not responsible for SLS glasss unique wear behavior at high RH. While no specific mechanism has been identified, mobile Na+ cations and silicate network structure are suggested to be the dominating factors. To better understand the amorphous silicate network structure of SLS glass. Several novel approaches based on non-destructive spectroscopy have been developed to describe the wide distribution of structural parameters of silicate network. With the assist of molecular dynamics (MD) simulation, the weighted mean of Si-O bond length is in linear relationship with the weighted mean of Si-O-Si asymmetric stretch absorbance. Then a new mathematical algorithm has been developed to extract absorbance of Si-O-Si asymmetric stretch from specular reflectance infrared spectra. By utilizing the selection rule of sum frequency generation (SFG) spectroscopy, O-HO distribution in the subsurface of SLS glass has been roughly identified, which is in good agreement with theoretical prediction. Speciation of hydrous species (ratio of SiOH/H2O) can be determined through a new algorithm based on attenuated total reflectance infrared (ATR-IR) spectroscopy and H depth profile. A new hypothesis on the unique wear behavior based on the current findings is proposed: shear induced hydrolysis and condensation reactions are in dynamic equilibrium in the presence of Na+. Existence of Na+ can lower the activation energy barrier, especially for condensation reactions. At high RH, Na+ can migrate through the adsorbed water layers and moved to the silanol sites to catalyze condensation reactions. To prove this hypothesis, MD simulation with reactive force fields as well as experimental work are required.

Surface Degradation Behavior of Bulk Metallic Glasses and High Entropy Alloys

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Total Pages : 100 pages
Book Rating : 4.:/5 (13 download)

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Book Synopsis Surface Degradation Behavior of Bulk Metallic Glasses and High Entropy Alloys by : Venkata A. Ayyagari

Download or read book Surface Degradation Behavior of Bulk Metallic Glasses and High Entropy Alloys written by Venkata A. Ayyagari and published by . This book was released on 2017 with total page 100 pages. Available in PDF, EPUB and Kindle. Book excerpt: In this study, the surface degradation behavior was studied for typical examples from bulk metallic glasses (BMGs), metallic glass composites (MGCs) and high entropy alloys (HEAs) alloy systems that are of scientific and commercial interest. The corrosion and wear behavior of two Zr-based bulk metallic glasses, Zr41.2Cu12.5Ni10Ti13.8Be22.5 and Zr57Cu15.4Ni12.6Al10Nb5, were evaluated in as-cast and thermally relaxed states. Significant improvement in corrosion rate, wear behavior, and friction coefficient was seen for both the alloys after thermal relaxation. Fully amorphous structure was retained with thermal relaxation below the glass transition temperature. This improvement in surface properties was explained by annihilation of free volume, the atomic scale defects in amorphous metals resulting from kinetic freezing. Recently developed MGCs, with in situ crystalline ductile phase, demonstrate a combination of mechanical properties and fracture behavior unseen in known structural metals. The composites showed higher wear rates but lower coefficient of friction compared to monolithic amorphous glasses. No tribolayer formation was seen for the composites in sharp contrast to that of the monolithic metallic glasses. Corrosion was evaluated by open circuit potential (OCP) analysis and potentiodynamic polarization. Site-specific corrosion behavior was studied by scanning vibration electrode technique (SVET) to identify formation of galvanic couples. Scanning kelvin probe microscope was used to map elecropositivity difference between the phases and linked to wear/corrosion behavior. Phases with higher elecropositivity were more susceptible to surface degradation. Wear and corrosion synergy in marine environment was evaluated for two high entropy alloys (HEAs), CoCrFeMnNi and Al0.1CoCrFeNi. Between the two alloys, Al0.1CoCrFeNi showed better wear resistance compared to CoCrFeMnNi in dry and marine conditions due to quicker passivation, a higher magnitude of polarization resistance and significantly larger pitting resistance.

Tribochemistry

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Publisher : Oxford University Press, USA
ISBN 13 : 9780195207316
Total Pages : 496 pages
Book Rating : 4.2/5 (73 download)

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Book Synopsis Tribochemistry by : Gerqard Heinicke

Download or read book Tribochemistry written by Gerqard Heinicke and published by Oxford University Press, USA. This book was released on 1988-05-12 with total page 496 pages. Available in PDF, EPUB and Kindle. Book excerpt: This volume provides a comprehensive introduction to the scientific and technical aspects of tribochemistry, a field concerned with the chemical reactions initiated by mechanical energy. The relevant theoretical background, recent innovations and results, and the possibilities of expanding industrial applications are covered.

Mechanochemistry in Nanoscience and Minerals Engineering

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Publisher : Springer Science & Business Media
ISBN 13 : 3540748555
Total Pages : 422 pages
Book Rating : 4.5/5 (47 download)

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Book Synopsis Mechanochemistry in Nanoscience and Minerals Engineering by : Peter Balaz

Download or read book Mechanochemistry in Nanoscience and Minerals Engineering written by Peter Balaz and published by Springer Science & Business Media. This book was released on 2008-10-20 with total page 422 pages. Available in PDF, EPUB and Kindle. Book excerpt: Mechanochemistry as a branch of solid state chemistry enquires into processes which proceed in solids due to the application of mechanical energy. This provides a thorough, up to date overview of mechanochemistry of solids and minerals. Applications of mechanochemistry in nanoscience with special impact on nanogeoscience are described. Selected advanced identification methods, most frequently applied in nanoscience, are described as well as the advantage of mechanochemical approach in minerals engineering. Examples of industrial applications are given. Mechanochemical technology is being applied in many industrial fields: powder metallurgy (synthesis of nanometals, alloys and nanocompounds), building industry (activation of cements), chemical industry (solid waste treatment, catalyst synthesis, coal ashes utilization), minerals engineering (ore enrichment, enhancement of processes of extractive metallurgy), agriculture industry (solubility increase of fertilizers), and pharmaceutical industry (improvement of solubility and bioavailability of drugs). This reference serves as an introduction to newcomers to mechanochemistry, and encourages more experienced researchers to broaden their knowledge and discover novel applications in the field.

Soft Mechanochemical Synthesis

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Publisher : Springer Science & Business Media
ISBN 13 : 0306476460
Total Pages : 211 pages
Book Rating : 4.3/5 (64 download)

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Book Synopsis Soft Mechanochemical Synthesis by : G.V. Avvakumov

Download or read book Soft Mechanochemical Synthesis written by G.V. Avvakumov and published by Springer Science & Business Media. This book was released on 2007-05-08 with total page 211 pages. Available in PDF, EPUB and Kindle. Book excerpt: Mechanical methods of the activation of chemical processes are currently widely used for the synthesis of various compounds. The present monograph deals with the development of a novel approach to mechanochemical synthesis based on reactions of solid acids, bases, hydrated compounds, crystal hydrates, basic and acidic salts. This method has been called soft mechanochemical synthesis. The monograph includes the papers published by the present authors. They describe the results of their investigations n the last two decades. New theoretical and experimental data on kinetics and mechanism of soft mechanochemical reactions in the mixtures of compounds mentioned above to give complex oxide compounds are presented. The description of new high energetic and high efficient mills providing effective occurrence of these reactions is delivered. The possibilities of applying soft mechanochemical synthesis for materials used in catalysts, material science, electronics, etc., are discussed. The advantages of the method proposed in comparison with other methods are demonstrated. The monograph is designed for researchers, engineers and technicians engaged in chemical and ceramic industry, for scientists and students specialized in the area of development, and application of new materials.

High-Energy Ball Milling

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Publisher : Elsevier
ISBN 13 : 1845699440
Total Pages : 436 pages
Book Rating : 4.8/5 (456 download)

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Book Synopsis High-Energy Ball Milling by : Małgorzata Sopicka-Lizer

Download or read book High-Energy Ball Milling written by Małgorzata Sopicka-Lizer and published by Elsevier. This book was released on 2010-05-24 with total page 436 pages. Available in PDF, EPUB and Kindle. Book excerpt: Mechanochemical processing is a novel and cost effective method of producing a wide range of nanopowders. It involves the use of a high energy ball mill to initiate chemical reactions and structural changes. High energy ball milling: Mechanochemical processing of nanopowders reviews the latest techniques in mechanochemistry and how they can be applied to the synthesis and processing of various high-tech materials.Part one discusses the basic science of mechanochemistry with chapters on such topics as the mechanism and kinetics of mechanochemical processes, kinetic behaviour in mechanochemically-induced structural and chemical transformations and materials design through mechanochemical processing. Part two reviews mechanochemical treatment of different materials including synthesis of complex ceramic oxides, production of intermetallic compound powders, synthesis of organic compounds, synthesis of metallic-ceramic composite powders and activation of covalent bond-based materials. Part three covers mechanochemical processes in metal powder systems and other applications with coverage of topics such as plating and surface modification using ultrasonic vibrations, activated powders as precursors for spark plasma sintering, titanium dioxide photocatalyst synthesis by mechanochemical doping and synthesis of materials for lithium-ion batteries.With its distinguished editor and international team of contributors, High energy ball milling: Mechanochemical processing of nanopowders is a standard reference for all those involved in the production of ceramic and metallic components using sintering and other powder metallurgy techniques to produce net shape components. Examines the latest techniques in mechanochemistry and how they can be applied to the synthesis and processing of various high-tech materials Discusses the basic science of mechanochemistry including kinetic behaviour, processes and mechanisms and materials design through mechanochemical processing Reviews mechanochemical treatment of different materials including synthesis of ceramic oxides, organic compounds and metallic-ceramic composite powders

The Science of Ceramic Machining and Surface Finishing

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ISBN 13 :
Total Pages : 450 pages
Book Rating : 4.0/5 ( download)

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Book Synopsis The Science of Ceramic Machining and Surface Finishing by : Samuel J.. Schneider

Download or read book The Science of Ceramic Machining and Surface Finishing written by Samuel J.. Schneider and published by . This book was released on 1972 with total page 450 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Carbon Black

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Publisher : Routledge
ISBN 13 : 135146261X
Total Pages : 484 pages
Book Rating : 4.3/5 (514 download)

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Book Synopsis Carbon Black by : Jean-Baptiste Donnet

Download or read book Carbon Black written by Jean-Baptiste Donnet and published by Routledge. This book was released on 2018-05-04 with total page 484 pages. Available in PDF, EPUB and Kindle. Book excerpt: The second edition of this reference provides comprehensive examinations of developments in the processing and applications of carbon black, including the use of new analytical tools such as scanning tunnelling microscopy, Fourier transform infrared spectroscopy and inverse gas chromatography.;Completely rewritten and updated by numerous experts in the field to reflect the enormous growth of the field since the publication of the previous edition, Carbon Black: discusses the mechanism of carbon black formation based on recent advances such as the discovery of fullerenes; elucidates micro- and macrostructure morphology and other physical characteristics; outlines the fractal geometry of carbon black as a new approach to characterization; reviews the effect of carbon black on the electrical and thermal conductivity of filled polymers; delineates the applications of carbon black in elastomers, plastics, and zerographic toners; and surveys possible health consequences of exposure to carbon black.;With over 1200 literature citations, tables, and figures, this resource is intended for physical, polymer, surface and colloid chemists; chemical and plastics engineers; spectroscopists; materials scientists; occupational safety and health physicians; and upper-level undergraduate and graduate students in these disciplines.

Engineered Materials Abstracts

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ISBN 13 :
Total Pages : 684 pages
Book Rating : 4.3/5 (91 download)

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Book Synopsis Engineered Materials Abstracts by :

Download or read book Engineered Materials Abstracts written by and published by . This book was released on 1991-11 with total page 684 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Handbook of Biomaterial Properties

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Publisher : Springer
ISBN 13 : 1493933051
Total Pages : 676 pages
Book Rating : 4.4/5 (939 download)

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Book Synopsis Handbook of Biomaterial Properties by : William Murphy

Download or read book Handbook of Biomaterial Properties written by William Murphy and published by Springer. This book was released on 2016-06-11 with total page 676 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book provides tabular and text data relating to normal and diseased tissue materials and materials used in medical devices. Comprehensive and practical for students, researchers, engineers, and practicing physicians who use implants, this book considers the materials aspects of both implantable materials and natural tissues and fluids. Examples of materials and topics covered include titanium, elastomers, degradable biomaterials, composites, scaffold materials for tissue engineering, dental implants, sterilization effects on material properties, metallic alloys, and much more. Each chapter author considers the intrinsic and interactive properties of biomaterials, as well as their appropriate applications and historical contexts. Now in an updated second edition, this book also contains two new chapters on the cornea and on vocal folds, as well as updated insights, data, and citations for several chapters.

Calcium Orthophosphates

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Publisher : CRC Press
ISBN 13 : 9814364177
Total Pages : 863 pages
Book Rating : 4.8/5 (143 download)

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Book Synopsis Calcium Orthophosphates by : Sergey V. Dorozhkin

Download or read book Calcium Orthophosphates written by Sergey V. Dorozhkin and published by CRC Press. This book was released on 2012-06-04 with total page 863 pages. Available in PDF, EPUB and Kindle. Book excerpt: Due to a great chemical similarity with the biological calcified tissues, many calcium orthophosphates possess remarkable biocompatibility and bioactivity. Materials scientists use this property extensively to construct artificial bone grafts that are either entirely made of or only surface-coated with the biologically relevant calcium orthophospha

Nanomaterials for Drug Delivery and Therapy

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Publisher : William Andrew
ISBN 13 : 0128166290
Total Pages : 580 pages
Book Rating : 4.1/5 (281 download)

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Book Synopsis Nanomaterials for Drug Delivery and Therapy by : Alexandru Mihai Grumezescu

Download or read book Nanomaterials for Drug Delivery and Therapy written by Alexandru Mihai Grumezescu and published by William Andrew. This book was released on 2019-03-14 with total page 580 pages. Available in PDF, EPUB and Kindle. Book excerpt: Nanomaterials for Drug Delivery and Therapy presents recent advances in the field of nanobiomaterials and their important applications in drug delivery, therapy and engineering. The book offers pharmaceutical perspectives, exploring the development of nanobiomaterials and their interaction with the human body. Chapters show how nanomaterials are used in treatments, including neurology, dentistry and cancer therapy. Authored by a range of contributors from global institutions, this book offers a broad, international perspective on how nanotechnology-based advances are leading to novel drug delivery and treatment solutions. It is a valuable research resource that will help both practicing medics and researchers in pharmaceutical science and nanomedicine learn more on how nanotechnology is improving treatments. Assesses the opportunities and challenges of nanotechnology-based drug delivery systems Explores how nanotechnology is being used to create more efficient drug delivery systems Discusses which nanomaterials make the best drug carriers

Nanomaterials by Severe Plastic Deformation

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Publisher : John Wiley & Sons
ISBN 13 : 3527604944
Total Pages : 872 pages
Book Rating : 4.5/5 (276 download)

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Book Synopsis Nanomaterials by Severe Plastic Deformation by : Michael J. Zehetbauer

Download or read book Nanomaterials by Severe Plastic Deformation written by Michael J. Zehetbauer and published by John Wiley & Sons. This book was released on 2006-03-06 with total page 872 pages. Available in PDF, EPUB and Kindle. Book excerpt: These proceedings of the "Second International Conference on Nanomaterials by Severe Plastic Deformation" review the enormous scientific avalanche that has been developing in the field over recent years. A valuable resource for any scientist and engineer working in this emerging field of nanotechnology.

Diffraction Analysis of the Microstructure of Materials

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Publisher : Springer Science & Business Media
ISBN 13 : 3662067234
Total Pages : 557 pages
Book Rating : 4.6/5 (62 download)

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Book Synopsis Diffraction Analysis of the Microstructure of Materials by : Eric J. Mittemeijer

Download or read book Diffraction Analysis of the Microstructure of Materials written by Eric J. Mittemeijer and published by Springer Science & Business Media. This book was released on 2013-11-21 with total page 557 pages. Available in PDF, EPUB and Kindle. Book excerpt: Overview of diffraction methods applied to the analysis of the microstructure of materials. Since crystallite size and the presence of lattice defects have a decisive influence on the properties of many engineering materials, information about this microstructure is of vital importance in developing and assessing materials for practical applications. The most powerful and usually non-destructive evaluation techniques available are X-ray and neutron diffraction. The book details, among other things, diffraction-line broadening methods for determining crystallite size and atomic-scale strain due, e.g. to dislocations, and methods for the analysis of residual (macroscale) stress. The book assumes only a basic knowledge of solid-state physics and supplies readers sufficient information to apply the methods themselves.

Nanomaterials from Clay Minerals

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Publisher : Elsevier
ISBN 13 : 012814534X
Total Pages : 693 pages
Book Rating : 4.1/5 (281 download)

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Book Synopsis Nanomaterials from Clay Minerals by : Aiqin Wang

Download or read book Nanomaterials from Clay Minerals written by Aiqin Wang and published by Elsevier. This book was released on 2019-08-15 with total page 693 pages. Available in PDF, EPUB and Kindle. Book excerpt: Nanomaterials from Clay Minerals: A New Approach to Green Functional Materials details the structure, properties and modification of natural nanoscale clay minerals and their application as the green constituent of functional materials. Natural nanomaterials from clay minerals have diverse morphologies, from 1D to 3D, including nanorods, nanofibers, nanotubes, nanosheets and nanopores. These structures show excellent adsorption, reinforcing, supporter, electronic, catalytic and biocompatible properties and are great as sustainable alternatives for toxic or expensive artificial materials. This book provides systematic coverage of clay nanomaterials as eco-friendly resources, emphasizing the importance of such materials in a range of industries, including biomedicine, energy and electronics. This book will provide an important reference for materials scientists and engineers who have an interest in sustainable material development. Presents systematic coverage of a broad range of nanomaterials from clay minerals, including Kaolinite, Smectite and Halloysite Depicts use cases for each mineral in a variety of applications, such as drug delivery, agriculture, and in the reinforcement of polymer materials Provides an overview on the advantages and limitations of nanomaterials from clay minerals, as well as chapters on the future potential of such materials