Table of contents

Volume 11

Number 4, April 1969

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FROM THE EDITORIAL BOARD

REVIEWS OF TOPICAL PROBLEMS

TABLES OF EXPERIMENTAL DATA

FROM THE CURRENT LITERATURE

REVIEWS OF TOPICAL PROBLEMS

538

and

CONTENTS I. Introduction 538 II. Formulation of Theory of Thermomagnetic Phenomena 540 III. Nondissipative Electron Fluxes in a Quantizing Magnetic Field 542 IV. Dissipative Electron Fluxes in the Elastic-scattering Approximation 546 V. Dissipative Fluxes with Account of Inelastic Scattering of Electrons and Phonons 548 VI. Fluxes along the Magnetic Field and Longitudinal Thermomagnetic Phenomena 550 VII. Comparison of Theory with Experiment 552 Appendix 559 a) Kinetic Equation for Electrons 559 b) Kinetic Equations for Electron-phonon Systems 560 Literature 562

564

and

CONTENTS Introduction 564 1. Mechanical Testing Methods 565 1.1. Abrasion Method 565 1.2. Microhardness Method 565 1.3. High-speed Rotor Method 565 1.4. Curvature Method ("Bulging") 565 1.5. Tension Method 566 2. Strength of Condensed Films 567 2.1. Effect of Thickness 567 2.2. Effect of Substrate Temperature and Rate of Condensation 568 2.3. Effect of Degree of Vacuum and Method of Evaporation 569 2.4. Alloy Films 570 2.5. Internal Macrostresses in Films 570 2.6. Fatigue Resistance of Condensed Films 571 3. Deformation and Failure of Films 571 3.1. Tensile Stress-strain Diagrams 571 3.2. Features of Deformation and Failure of Films 572 3.3. Creep and Endurance of Films 573 3.4. Effect of Rolling of Vacuum Condensates 574 4. Structure (Substructure) of High-strength Condensed Films 574 5. Multilayer Vacuum Condensates 577 6. Conclusion 579 7. Bibliography 579

METHODOLOGICAL NOTES

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