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Plasticity of Metals and Alloys

Autor V.V. Pustovalov
en Limba Engleză Paperback – 18 aug 2009
The results of observations and investigations of a new phenomenon -- changes in the macroscopic characteristics of the plastic deformation of metals and alloys at a superconducting transition -- are systematised. In these works it is shown for the first time that the electronic drag of dislocations accompanying low-temperature deformation is effective. The main experimental features of the phenomenon -- the dependences of the characteristics of the change in plasticity at a superconducting transition on the stress, deformation, temperature, deformation rate, and concentration of the alloying element in the superconductor -- and results indicating a correlation between the characteristics of the effect and the superconducting properties are presented. Experiments clarifying the mechanisms of the phenomenon are analysed. A brief exposition of the theoretical investigations of the electronic drag of dislocations in metals in the normal and superconducting states and the influence of a superconducting transition on the plasticity is given. The theoretical results are compared with the experimental results. Examples of the application of the effect as a new method for investigating the physical mechanisms of low-temperature plastic deformation are presented. The applied aspects of the phenomenon are discussed separately.
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Specificații

ISBN-13: 9781604569650
ISBN-10: 1604569654
Pagini: 131
Ilustrații: tables & charts
Dimensiuni: 155 x 224 x 10 mm
Greutate: 0.25 kg
Ediția:New.
Editura: Nova Science Publishers Inc

Cuprins

Preface; Introduction; History of the Problem; Discovery of the Influence of a Superconducting Transition on the Macroscopic Characteristics of Plastic Deformation; Basic Experimental Characteristics of the Effect; Effect of a Superconducting Transition on Deformation Twinning; Correlation Between the Characteristics of the Effect and the Superconducting Properties; Basic Theoretical Concepts of the Influence of a Superconducting Transition on the Plasticity; Direct Experiments; New Method for Studying the Mechanisms of Low-Temperature Plasticity; Applied Aspects; Experiments on HTSC; Conclusions; Index.