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Engineered metal matrix composites : forming methods, material properties, and industrial applications / Luca Magagnin, editor.

Contributor(s): Material type: TextTextSeries: Materials science and technologies series | Nanotechnology science and technology seriesPublication details: New York : Nova Science Publishers, c2012.Description: 1 online resource (vi, 393 p.)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781620817421
  • 162081742X
Subject(s): Genre/Form: Additional physical formats: Print version:: Engineered metal matrix compositesDDC classification:
  • 620.1/6 23
LOC classification:
  • TA481
Online resources:
Contents:
ENGINEERED METAL MATRIX COMPOSITES: FORMING METHODS, MATERIAL PROPERTIES AND INDUSTRIAL APPLICATIONS; ENGINEERED METAL MATRIX COMPOSITES: FORMING METHODS, MATERIAL PROPERTIES AND INDUSTRIAL APPLICATIONS; LIBRARY OF CONGRESS CATALOGING-IN-PUBLICATION DATA; CONTENTS; PREFACE; Chapter 1: METAL MATRIX COMPOSITES: FORMING METHODS,MATERIALS PROPERTIES, INDUSTRIAL APPLICATIONS AND TRIBOLOGICAL BEHAVIOR; ABSTRACT; INTRODUCTION; DEFINITION; CLASSIFICATION; MARKET; PROPERTIES; APPLICATIONS; MATERIALS; ACKNOWLEDGMENTS; REFERENCES.
Chapter 2: FABRICATION, MICROSTRUCTURES AND PROPERTIES OF IN SITU METAL MATRIX COMPOSITESABSTRACT; 1.1. FABRICATION METHODS OF IN SITUMETAL MATRIX COMPOSITES; 1.2. FORMATION MECHANISM BETWEEN IN SITUNANO- TIN -- ALN PARTICLES AND S/L INTERFACE DURINGTHE SOLIDIFICATION OF TIN -- ALN /AL COMPOSITE; 1.3. STUDIES ON TIP/AL COMPOSITES FABRICATED BY PLASMA JET; 1.4. MICROTEXTURAL CHARACTERIZATION OF AS-CASTAND HOT PRESS-DEFORMED TIN WHISKERSIN TINW-ALNP/AL COMPOSITE; ACKNOWLEDGMENTS; REFERENCES.
Chapter 3: FABRICATION AND CHARACTERIZATIONOF IN-SITU SYNTHESIS OF NIOBIUMCARBIDE REINFORCED IRON COMPOSITEBY MECHANICAL ALLOYINGABSTRACT; 1.0. INTRODUCTION; 2.0. MECHANICAL ALLOYING OF IN-SITUIRON-NIOBIUM CARBIDE COMPOSITE; 2.1. PHASE DETERMINATION; 2.2 MICROSTRUCTURE OBSERVATION; 2.3. COMPOSITE PROPERTIES; CONCLUSION; ACKNOWLEDGMENTS; REFERENCES; Chapter 4: ELECTRODEPOSITION OF GOLD COMPOSITES WITH CARBON NANOMATERIALS; ABSTRACT; INTRODUCTION; SYNTHESIS OPTIONS FOR ADVANCED NANOCOMPOSITES; ELECTROCODEPOSITION OF GOLD; EXPERIMENTAL.
ELECTRODEPOSITION OF GOLD/NANODIAMOND COMPOSITEFROM SULPHITE ELECTROLYTEELECTRODEPOSITION OF GOLD/CNT COMPOSITEFROM SULPHITE ELECTROLYTE; CONCLUSION; REFERENCES; Chapter 5: METAL MATRIX COMPOSITESAS THERMAL MANAGEMENT MATERIALSFOR AUTOMOTIVE APPLICATIONS; ABSTRACT; 1. INTRODUCTION; 2. THERMAL MANAGEMENT MATERIALS FOR ECU HOUSING; 4. RECOMMENDATIONS AND CONCLUSION; REFERENCES; Chapter 6: TRIBOLOGY OF THE AL-SI ALLOY BASEDMMCS AND THEIR APPLICATIONIN AUTOMOTIVE INDUSTRY; ABSTRACT; 1. INTRODUCTION; 2. STATE OF THE ART FOR MMCS WITH AL-SI ALLOY BASEAND COMMONLY USED REINFORCEMENTS.
3. TRIBOLOGICAL EXPERIMENTAL STUDIES ON THE A356 AL-SIALLOY MMCS WITH AL2O3, SIC AND GRAPHITE PARTICLESPRODUCED BY THE COMPOCASTING PROCESSCONCLUSION; REFERENCES; Chapter 7: MICROSTRUCTURAL CHARACTERIZATIONAND WEAR PROPERTIES OF MECHANICALLYALLOYED AND SINTERED AL-4WT.% CUALLOY COMPOSITES REINFORCEDWITH TIC AND ZRC PARTICULATES; ABSTRACT; 1. INTRODUCTION; 2. EXPERIMENTAL PROCEDURE; 3. RESULTS; CONCLUSION; REFERENCES; Chapter 8: SELF-LUBRICATINGNANO- AND MICROCOMPOSITESFOR ROOM AND ELEVATED TEMPERATURES; ABSTRACT; 1. ABOUT THE DIFFERENT SOLID LUBRICANT SOLUTIONS.
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Includes bibliographical references and index.

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ENGINEERED METAL MATRIX COMPOSITES: FORMING METHODS, MATERIAL PROPERTIES AND INDUSTRIAL APPLICATIONS; ENGINEERED METAL MATRIX COMPOSITES: FORMING METHODS, MATERIAL PROPERTIES AND INDUSTRIAL APPLICATIONS; LIBRARY OF CONGRESS CATALOGING-IN-PUBLICATION DATA; CONTENTS; PREFACE; Chapter 1: METAL MATRIX COMPOSITES: FORMING METHODS,MATERIALS PROPERTIES, INDUSTRIAL APPLICATIONS AND TRIBOLOGICAL BEHAVIOR; ABSTRACT; INTRODUCTION; DEFINITION; CLASSIFICATION; MARKET; PROPERTIES; APPLICATIONS; MATERIALS; ACKNOWLEDGMENTS; REFERENCES.

Chapter 2: FABRICATION, MICROSTRUCTURES AND PROPERTIES OF IN SITU METAL MATRIX COMPOSITESABSTRACT; 1.1. FABRICATION METHODS OF IN SITUMETAL MATRIX COMPOSITES; 1.2. FORMATION MECHANISM BETWEEN IN SITUNANO- TIN -- ALN PARTICLES AND S/L INTERFACE DURINGTHE SOLIDIFICATION OF TIN -- ALN /AL COMPOSITE; 1.3. STUDIES ON TIP/AL COMPOSITES FABRICATED BY PLASMA JET; 1.4. MICROTEXTURAL CHARACTERIZATION OF AS-CASTAND HOT PRESS-DEFORMED TIN WHISKERSIN TINW-ALNP/AL COMPOSITE; ACKNOWLEDGMENTS; REFERENCES.

Chapter 3: FABRICATION AND CHARACTERIZATIONOF IN-SITU SYNTHESIS OF NIOBIUMCARBIDE REINFORCED IRON COMPOSITEBY MECHANICAL ALLOYINGABSTRACT; 1.0. INTRODUCTION; 2.0. MECHANICAL ALLOYING OF IN-SITUIRON-NIOBIUM CARBIDE COMPOSITE; 2.1. PHASE DETERMINATION; 2.2 MICROSTRUCTURE OBSERVATION; 2.3. COMPOSITE PROPERTIES; CONCLUSION; ACKNOWLEDGMENTS; REFERENCES; Chapter 4: ELECTRODEPOSITION OF GOLD COMPOSITES WITH CARBON NANOMATERIALS; ABSTRACT; INTRODUCTION; SYNTHESIS OPTIONS FOR ADVANCED NANOCOMPOSITES; ELECTROCODEPOSITION OF GOLD; EXPERIMENTAL.

ELECTRODEPOSITION OF GOLD/NANODIAMOND COMPOSITEFROM SULPHITE ELECTROLYTEELECTRODEPOSITION OF GOLD/CNT COMPOSITEFROM SULPHITE ELECTROLYTE; CONCLUSION; REFERENCES; Chapter 5: METAL MATRIX COMPOSITESAS THERMAL MANAGEMENT MATERIALSFOR AUTOMOTIVE APPLICATIONS; ABSTRACT; 1. INTRODUCTION; 2. THERMAL MANAGEMENT MATERIALS FOR ECU HOUSING; 4. RECOMMENDATIONS AND CONCLUSION; REFERENCES; Chapter 6: TRIBOLOGY OF THE AL-SI ALLOY BASEDMMCS AND THEIR APPLICATIONIN AUTOMOTIVE INDUSTRY; ABSTRACT; 1. INTRODUCTION; 2. STATE OF THE ART FOR MMCS WITH AL-SI ALLOY BASEAND COMMONLY USED REINFORCEMENTS.

3. TRIBOLOGICAL EXPERIMENTAL STUDIES ON THE A356 AL-SIALLOY MMCS WITH AL2O3, SIC AND GRAPHITE PARTICLESPRODUCED BY THE COMPOCASTING PROCESSCONCLUSION; REFERENCES; Chapter 7: MICROSTRUCTURAL CHARACTERIZATIONAND WEAR PROPERTIES OF MECHANICALLYALLOYED AND SINTERED AL-4WT.% CUALLOY COMPOSITES REINFORCEDWITH TIC AND ZRC PARTICULATES; ABSTRACT; 1. INTRODUCTION; 2. EXPERIMENTAL PROCEDURE; 3. RESULTS; CONCLUSION; REFERENCES; Chapter 8: SELF-LUBRICATINGNANO- AND MICROCOMPOSITESFOR ROOM AND ELEVATED TEMPERATURES; ABSTRACT; 1. ABOUT THE DIFFERENT SOLID LUBRICANT SOLUTIONS.

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