The measurement of the surface mechanical properties of silicate glasses using a stress wave emission detection technique

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Book Synopsis The measurement of the surface mechanical properties of silicate glasses using a stress wave emission detection technique by : William Edward Swindlehurst

Download or read book The measurement of the surface mechanical properties of silicate glasses using a stress wave emission detection technique written by William Edward Swindlehurst and published by . This book was released on 1974 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

The Measurement of the Surface Mechanical Properties of Silicate Glasses Using a Stress Wave Emission Detection Technique

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Book Synopsis The Measurement of the Surface Mechanical Properties of Silicate Glasses Using a Stress Wave Emission Detection Technique by :

Download or read book The Measurement of the Surface Mechanical Properties of Silicate Glasses Using a Stress Wave Emission Detection Technique written by and published by . This book was released on 1974 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Elasticity and Strength in Glasses

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Publisher : Elsevier
ISBN 13 : 0323157289
Total Pages : 295 pages
Book Rating : 4.3/5 (231 download)

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Book Synopsis Elasticity and Strength in Glasses by : D Uhlmann

Download or read book Elasticity and Strength in Glasses written by D Uhlmann and published by Elsevier. This book was released on 2012-12-02 with total page 295 pages. Available in PDF, EPUB and Kindle. Book excerpt: Glass: Science and Technology, Volume 5: Elasticity and Strength in Glasses covers the scientific and engineering aspects of glass elasticity and strength. This volume is organized into six chapters and begins with the examination of the elastic properties of vitreous silica and silicate glasses, including those that contain moderate amounts of other network formers. The following chapters describe the fracture mechanics and inelastic deformation of oxide, metallic, and polymeric glasses. The discussion then shifts to the concept of glass strengthening approaches and some technologies of significant practical application to glasses. A chapter explores the process of thermal tempering of glass, including the physics, theories, and standards of the process. The last chapter focuses on the practical aspects of chemical strengthening and the mechanical and physical properties of the obtained glass. This book is of great benefit to glass scientists and researchers.

Handbook of Glass Properties

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Publisher : Academic Press
ISBN 13 :
Total Pages : 700 pages
Book Rating : 4.3/5 (91 download)

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Book Synopsis Handbook of Glass Properties by : Narottam P. Bansal

Download or read book Handbook of Glass Properties written by Narottam P. Bansal and published by Academic Press. This book was released on 1986-05-28 with total page 700 pages. Available in PDF, EPUB and Kindle. Book excerpt: This volume is a compilation of data on the properties of glasses. The authors have critically examined and correlated the most reliable data on the properties of multicomponent commercial silicate glasses, vitreous silica, and binary and ternary laboratory glasses. Thermodynamic, thermal, mechanical, electrical, and transport properties are covered. Measurement methods and appropriate theories are also discussed.

Field Strength Effect on the Elastoplastic and Mechanical Properties of Single Modifier Aluminoborosilicate Glasses

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Book Synopsis Field Strength Effect on the Elastoplastic and Mechanical Properties of Single Modifier Aluminoborosilicate Glasses by : Aubrey Fry

Download or read book Field Strength Effect on the Elastoplastic and Mechanical Properties of Single Modifier Aluminoborosilicate Glasses written by Aubrey Fry and published by . This book was released on 2023 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: The theoretical strength of glass far exceeds its measurable strength. The limiting factor is glass's sensitivity to surface flaws, largely due to handling. Silicate glasses are the largest commercially used glass family because they are highly versatile and can be designed with many enhanced properties. Decades worth of patents and scientific literature discuss intrinsic and extrinsic strengthening mechanisms that compensate for glass's sensitivity to surface damage, including thermal tempering, ion exchange, ceramming, lamination, etc. The focus of this dissertation is to explore the impact of modifier field strength on the mechanical response of aluminoborosilicate glasses designed to have intrinsic damage resistance. By exploring the strengthening mechanisms at the atomic level, it is possible to gain a deeper understanding of how the glass composition governs physical properties and its mechanical response. Based on the principle of topological adaptability, aluminoborosilicate (ABS) glasses can be designed with intrinsically high damage resistance if they incorporate three-coordinated boron atoms. Using a careful selection of network modifying ions, they can also be amenable for chemical strengthening. This dissertation provides a comprehensive investigation of the effect of field strength (FS) on intrinsic damage resistance considering three monovalent and three divalent modifiers in ABS glasses. Various aspects of mechanical properties were analyzed as a function of network modifier (NWM) field strength and the magnitude of the applied stress. Results from this work help to (i) reevaluate assumptions regarding glass structure, (ii) improve future mechanical testing procedures, and (iii) gain insights into the cracking behavior and deformation mechanisms in silicate glasses as a function of modifier field strength and applied stress. (1) Atomic Structure: The first major discovery from this work regards the atomic structure of high strain point, mixed former glasses. For the current ABS glasses, the ratio of network formers and the low concentration of modifier oxides, in addition to high processing temperatures, increases the entropic contribution to the glass structure such that the enthalpically driven modifier and network former (NWF) interactions are frustrated. Therefore, in such systems it cannot be assumed that all Al3+ cations will be four-coordinated even if [NWM] >= [Al2O3] (concentrations denoted by square brackets). (2) Hardness and Crack Resistance: The second major discovery from this work addresses the simultaneous increase of both hardness (H) and crack resistance (CR) as a function of modifier field strength. Historically, an increase in H is presumably marked by an increase in rigidity and the probability of crack initiation. This is not the case for the current compositions, which brings the assumption of the inverse relationship between H and CR into question, specifically for glasses that might not be classified as normal. (3) Plasticity: The third discovery of this work involves the nuanced relationship between H, CR, and plasticity. Plasticity (VP) increases with modifier field strength, similar to H and CR. These findings appear counterintuitive since hardness is a measure of resistance to plastic deformation. It is found that a balance of plastic deformation mechanisms, namely, shear flow and densification, allow for an increase in H, CR, and plasticity as a function of field strength. (4) Topological Adaptability: The fourth major finding from this dissertation involves the predominant assumptions regarding topological adaptability. The topological adaptability is mainly attributed to two mechanisms: (i) the reduction in free volume under an applied stress (e.g., a decrease in bond length or angle), and (ii) structural unit conversion under an applied stress (e.g., NWF coordination changes). The first attribute is quantified by a decrease in molar volume (VM) post indentation or compression, and the second attribute is enabled by an initially high concentration of three-coordinated boron ([B3]). It is generally accepted that CR increases as topological adaptability is enhanced. The ABS glasses in this study were designed to take advantage of both mechanisms, while changing the modifier FS. Although this work did not systematically explore the impact of varying VM and [B3] on CR, it did show that CR increased as VM decreased. While this work implies that the topological adaptability can be helped or hindered based on the modifier species, future work needs to be done to systematically monitor changes in VM and CR as a function of varying [B3] in a series of related ABS glasses. (5) Poisson's Ratio: The fifth discovery from this research is that the suggested link between Poisson's ratio and cracking behavior should be reexamined. The elastic modulus increases with field strength but the Poisson's ratio did not trend with any measured property, namely, the VM and CR. Poisson's ratio has been touted as holding the key to understand cracking behavior in oxide glasses, but this is not the case for the current compositions. This misconception is likely due to the large amount of research conducted on normal (e.g., soda-lime silicate) and anomalous (e.g., pure silica) glasses which tend to ignore the intermediate glasses or mixed former glasses. (6) Elastic to Plastic Ratio: The sixth finding of this research has a direct connection to application: the mechanical performance of glass under increasing stress. The elastic-to-plastic deformation ratio (VE/VP) increases as the applied load increases. For the current compositions, a higher load results in a greater elastic response, which may help to explain static vs dynamic fatigue phenomena where a glass appears to be "stronger" when tested at higher strain rates. (7) Fracture Toughness: The seventh major discovery of this work is that the fracture toughness (KIc) of the alkaline earth glasses increases as a function of modifier field strength. Predicting fracture toughness has eluded many researchers both in ceramic and glass sciences. KIc has been related to a variety of material properties, but there is no universal predictor for how a material will perform during a fracture toughness test, especially since property trends are often found to deviate when changing the length scale of the test. From this work, results indicate that the hardness (micro-scale), crack resistance (meso-scale), fracture toughness (meso- to macro-scale), and the elastic moduli (bulk) all increase in ABS glasses with increasing FS, which has not been shown before. Additionally, the material property that had the highest linear correlation with KIc was VE/VP, indicating that a volumetric recovery study may serve as a new micro-scale test that can help predict the fracture toughness performance of ABS glasses. The goal of this dissertation is to explore the impact of glass composition on the elastoplastic response and mechanical performance of six novel single modifier aluminoborosilicate glasses. This work finds that modifier FS has a distinct role influencing mechanical properties and cracking behavior, even at modifier concentrations of around 10 mole percent. By rethinking glass chemistry accounting for these effects, properties such as hardness, crack resistance, elastic modulus, and even fracture toughness can be improved.

Index to Theses Accepted for Higher Degrees by the Universities of Great Britain and Ireland and the Council for National Academic Awards

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ISBN 13 :
Total Pages : 568 pages
Book Rating : 4.F/5 ( download)

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Book Synopsis Index to Theses Accepted for Higher Degrees by the Universities of Great Britain and Ireland and the Council for National Academic Awards by :

Download or read book Index to Theses Accepted for Higher Degrees by the Universities of Great Britain and Ireland and the Council for National Academic Awards written by and published by . This book was released on 1972 with total page 568 pages. Available in PDF, EPUB and Kindle. Book excerpt:

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.

Silica Glass and Binary Silicate Glasses

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Publisher : Elsevier
ISBN 13 : 0444598960
Total Pages : 686 pages
Book Rating : 4.4/5 (445 download)

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Book Synopsis Silica Glass and Binary Silicate Glasses by :

Download or read book Silica Glass and Binary Silicate Glasses written by and published by Elsevier. This book was released on 2012-12-02 with total page 686 pages. Available in PDF, EPUB and Kindle. Book excerpt: Physical Sciences Data, Volume 15: Handbook of Glass Data: Silica Glass and Binary Silicate Glasses, Part A presents information on the systems capable of forming glasses by cooling melts. This book provides data on the crystallization rates of glasses. Organized into six chapters, this volume begins with an overview of the melt properties for the glass-forming systems. This text then examines the notion of a component that is very significant for determining the number of components in each investigated glass. Other chapters consider the contents of several oxides of the same element but in different valent state as the reason to transfer a glass to the category of the increased number of components. This book discusses as well the analytical composition of glass. The final chapter deals with flotation method using tetrabromoethane and benzene mixture. This book is a valuable resource for glass specialists, chemists, engineers, scientists, and information science workers.

BLLD Announcement Bulletin

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ISBN 13 :
Total Pages : 624 pages
Book Rating : 4.3/5 (91 download)

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Book Synopsis BLLD Announcement Bulletin by : British Library. Lending Division

Download or read book BLLD Announcement Bulletin written by British Library. Lending Division and published by . This book was released on 1977 with total page 624 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Silicate Glass Technology Methods

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Publisher : John Wiley & Sons
ISBN 13 :
Total Pages : 344 pages
Book Rating : 4.F/5 ( download)

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Book Synopsis Silicate Glass Technology Methods by : Clarence L. Babcock

Download or read book Silicate Glass Technology Methods written by Clarence L. Babcock and published by John Wiley & Sons. This book was released on 1977-05-02 with total page 344 pages. Available in PDF, EPUB and Kindle. Book excerpt: Good,No Highlights,No Markup,all pages are intact, Slight Shelfwear,may have the corners slightly dented, may have slight color changes/slightly damaged spine.

Surface Properties of Silicate Glasses

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ISBN 13 :
Total Pages : 112 pages
Book Rating : 4.F/5 ( download)

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Book Synopsis Surface Properties of Silicate Glasses by : György Korányi

Download or read book Surface Properties of Silicate Glasses written by György Korányi and published by . This book was released on 1963 with total page 112 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Near Surface Mechanical Properties and Hydration of Silicate Glasses

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (926 download)

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Book Synopsis Near Surface Mechanical Properties and Hydration of Silicate Glasses by : Damir R. Tadjiev

Download or read book Near Surface Mechanical Properties and Hydration of Silicate Glasses written by Damir R. Tadjiev and published by . This book was released on 2010 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Energy Research Abstracts

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ISBN 13 :
Total Pages : 782 pages
Book Rating : 4.3/5 (129 download)

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Book Synopsis Energy Research Abstracts by :

Download or read book Energy Research Abstracts written by and published by . This book was released on 1995 with total page 782 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Silica Glass and Binary Silicate Glasses

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Publisher : Elsevier Publishing Company
ISBN 13 : 9780444422156
Total Pages : 696 pages
Book Rating : 4.4/5 (221 download)

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Book Synopsis Silica Glass and Binary Silicate Glasses by : Oleg Vsevolodovich Mazurin

Download or read book Silica Glass and Binary Silicate Glasses written by Oleg Vsevolodovich Mazurin and published by Elsevier Publishing Company. This book was released on 1983 with total page 696 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Atomistic-simulations of Silicate Glasses

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Total Pages : pages
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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.

Physical Properties of Glass

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ISBN 13 :
Total Pages : 240 pages
Book Rating : 4.3/5 (91 download)

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Book Synopsis Physical Properties of Glass by : J. E. Stanworth

Download or read book Physical Properties of Glass written by J. E. Stanworth and published by . This book was released on 1950 with total page 240 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Basic Optical Stress Measurement in Glass

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ISBN 13 : 9780900682278
Total Pages : 100 pages
Book Rating : 4.6/5 (822 download)

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Book Synopsis Basic Optical Stress Measurement in Glass by : H. W. McKenzie

Download or read book Basic Optical Stress Measurement in Glass written by H. W. McKenzie and published by . This book was released on 1999 with total page 100 pages. Available in PDF, EPUB and Kindle. Book excerpt: During the manufacture of all glass products, both temporary and residual stresses develop. Such stresses arise as a consequence of the manufacturing processes and for proper process control to be exercised it is necessary to be able to quantify these stresses. The optical method of experimental stress analysis, known as photoelasticity, has been used very effectively in the evaluation of the stresses occurring in structures of varying complexity, together with their components, when subjected to specified loading conditions. As the photoelastic technique requires materials that are both transparent and birefringent and many glasses exhibit these properties, this method of analysis can be used to determine the stresses in glass products. There are many texts dealing with photoelastic analysis and its applications, but they are not aimed specifically at the assessment of residual stresses in glasses. This publication offers a practical guide providing information on the various optical arrangements and interpretation of results from typical plant apparatus, it is of general interest to those making stress measurements within the glass industry. There is a survey of the available methods and an outline of the application of these techniques to the various measurements which have to be made as a matter of course during production. In addition, the relevant theory is discussed in a non-mathematical manner to provide readers with the background knowledge of how these techniques work, as well as an appreciation of the limitations of the methods when applied to glass products. Users of photoelastic techniques in the glass industry, both in day-to-day quality assurance and in more specialist fault-finding applications, will find the information in this book relevant to their needs and that it provides an improved understanding of the measurements being made.