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- W111537173 endingPage "113" @default.
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- W111537173 abstract "This chapter deals with the microstructure and properties of interfaces among dissimilar materials. To describe the bonding mechanism between a metal and a ceramic material, heterophase interfaces have been studied with high resolution electron microscopy (HREM). The interfaces for observation are produced by internal oxidation to obtain many small oxide precipitates inside a metal matrix. From the micrographs, an interface is often considered to be incoherent when actually the lattice deformations might have been too small to observe. Interfaces are also observed to contain either inclined or stand-off dislocations. These can also be explained by calculations if one atomic column is removed so as to simulate dislocation climb. The slightly tilted interfaces also provide another opportunity to get an indication of the interaction strength, through the emission of stacking faults from the interface into the matrix to relieve the tilt. The more the stacking fault is emitted into the material, the stronger is the interaction across the interface. This chapter concludes that the interest is to obtain heterophase interfaces of ceramic particles that are firmly bonded to the surrounding metallic substrate." @default.
- W111537173 created "2016-06-24" @default.
- W111537173 creator A5036208333 @default.
- W111537173 creator A5072237066 @default.
- W111537173 date "2001-01-01" @default.
- W111537173 modified "2023-09-24" @default.
- W111537173 title "MICROSTRUCTURE AND PROPERTIES OF INTERFACES BETWEEN DISSIMILAR MATERIALS" @default.
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