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Structure and Properties of Intermetallics in Pre-Transitional Low-Stability States (Paperback): A. I. Potekaev, A. M. Glezer,... Structure and Properties of Intermetallics in Pre-Transitional Low-Stability States (Paperback)
A. I. Potekaev, A. M. Glezer, V.V. Kulagin, M.D Starostenkov, A.A. Klopot
R2,106 Discovery Miles 21 060 Ships in 12 - 17 working days

This book is dedicated to the fundamental physical aspects of stability, the influence of structural defects on the properties and structural phase transformations of BCC alloys. The authors present patterns that occur in the structural-phase states of functional alloys with low stability or instability under thermal cycling effects. Structural-phase transformations and the physical laws governing the influence of the thermomechanical effect on the properties of alloys are examined to advance development of technological processes for processing functional materials. Features: Studies the correlation between structural phase states and changes in the physico-mechanical properties of intermetallic compounds Explores the influence of thermomechanical cycling on the properties of functional alloys Details low-stability pretransition states in alloys

Structure and Properties of Intermetallics in Pre-Transitional Low-Stability States (Hardcover): A. I. Potekaev, A. M. Glezer,... Structure and Properties of Intermetallics in Pre-Transitional Low-Stability States (Hardcover)
A. I. Potekaev, A. M. Glezer, V.V. Kulagin, M.D Starostenkov, A.A. Klopot
R5,282 Discovery Miles 52 820 Ships in 12 - 17 working days

This book is dedicated to the fundamental physical aspects of stability, the influence of structural defects on the properties and structural phase transformations of BCC alloys. The authors present patterns that occur in the structural-phase states of functional alloys with low stability or instability under thermal cycling effects. Structural-phase transformations and the physical laws governing the influence of the thermomechanical effect on the properties of alloys are examined to advance development of technological processes for processing functional materials. Features: Studies the correlation between structural phase states and changes in the physico-mechanical properties of intermetallic compounds Explores the influence of thermomechanical cycling on the properties of functional alloys Details low-stability pretransition states in alloys

Thermal and Time Stability of Amorphous Alloys (Paperback): A. M. Glezer, A. I. Potekaev, A. O. Cheretaeva Thermal and Time Stability of Amorphous Alloys (Paperback)
A. M. Glezer, A. I. Potekaev, A. O. Cheretaeva
R1,375 Discovery Miles 13 750 Ships in 12 - 17 working days

This reference is dedicated to the problem of time-temperature stability of amorphous (non-crystalline) metal alloys with strongly nonequilibrium structure and unique physical and mechanical properties that are obtained by quenching from the melt at a rate that exceeds one millions of degrees c.o.s. second. As a stability test, the behavior of the plasticity of amorphous alloys is studied. The book examines the fundamental characteristics of amorphous alloys, the basic laws of structural relaxation, generalized information about the phenomenon of the ductile-brittle transition (temper embrittlement), the development of physically justified methods of predicting the stability of the properties, and provides information about the attempts of controlling the structure for the purpose of suppressing or deceleration of the ductile-brittle transition and, as a consequence, increasing the temperature and temporal stability of the amorphous state.

Thermal and Time Stability of Amorphous Alloys (Hardcover): A. M. Glezer, A. I. Potekaev, A. O. Cheretaeva Thermal and Time Stability of Amorphous Alloys (Hardcover)
A. M. Glezer, A. I. Potekaev, A. O. Cheretaeva
R5,555 Discovery Miles 55 550 Ships in 12 - 17 working days

This reference is dedicated to the problem of time-temperature stability of amorphous (non-crystalline) metal alloys with strongly nonequilibrium structure and unique physical and mechanical properties that are obtained by quenching from the melt at a rate that exceeds one millions of degrees c.o.s. second. As a stability test, the behavior of the plasticity of amorphous alloys is studied. The book examines the fundamental characteristics of amorphous alloys, the basic laws of structural relaxation, generalized information about the phenomenon of the ductile-brittle transition (temper embrittlement), the development of physically justified methods of predicting the stability of the properties, and provides information about the attempts of controlling the structure for the purpose of suppressing or deceleration of the ductile-brittle transition and, as a consequence, increasing the temperature and temporal stability of the amorphous state.

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