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Titlebook: Glass … Current Issues; A. F. Wright,J. Dupuy Book 1985 Martinus Nijhoff Publishers, Dordrecht 1985 Polymer.ceramics.composite material.cr

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Homogeneous Flow and Anelastic/Plastic Deformation of Metallic Glassesrate and stress, and the effect of structural relaxation are considered. A model of homogeneous deformation of metallic glasses near Tg which takes into account all the experimental features is proposed. According to this model, plastic deformation is principally dependent on the recovery processes
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Real and Potential Applications of Amorphous Metal Ribbonsd, current status and potential of these programs are described. A variety of smaller magnetic devices made from amorphous metal ribbons are now for sale in commercial equipments. These devices and their impact are briefly described. A final group of potential applications of amorphous alloys, which
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Applications of Thin Film Amorphous Magnetic Materials discovered for preparing amorphous alloys by vapor quenching as shown by Mailer et al.. (2) A few years later, in the mid 1960’s both liquid (3) and vapor quenched amorphous alloys (4) were found to order magnetically. The applications of both classes of materials first received intense scrutiny in
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Glass Formation and Growth in Solidsperature, T.. The formation of glass requires that the process of crystallization be bypassed during cooling through the thermodynamic melting point T., and the undercooled temperature range to below T.. The nucleation and growth of crystals in an undercooled melt involves atomic rearrangements whic
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Metallic Glasses in High-Energy Pulsed-Power Systems to refine and scale up in power pulse compression techniques first developed for radar in the 1950’s (1). These efforts occured at the same time as the commercial availability of large quantities of ferromagnetic metallic glass ribbons. These new magnetic materials were found to be excellently suit
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Magnetic Properties and Medium-Range Order in Metallic Glassesund in many cases to be predominant on basic magnetic properties, so that a proper evaluation in the structural effects can be achieved only by a direct comparison between an amorphous alloy and a crystalline compound of same composition. Such a comparison has been made for a rather large number of
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The Gel-Glass Processd state at low temperatures. In this way a “precursor” material (gel) is formed from which glass may be obtained by subsequent elimination of the unwanted residues (water, organic compounds, etc.) and collapse of the structure at temperatures much lower than those required for the direct melt format
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