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- W2002401241 abstract "Abstract The strength of the Ag-Cu eutectic was measured by tension testing for two different types of structure over a range of sizes, temperatures and strain rates. One was a lamellar structure which was produced by high speed directional solidification and the other an equiaxed structure resulting from deformation and recrystallization. At elevated temperatures the material with the lamellar structure was much stronger than that with the equiaxed structure. The equiaxed structure was superplastic. As the size of the plates and the grains decreased, the strength increased at low temperatures, but decreased at elevated temperatures. The difference in strength of the two materials was attributed to the different morphologies and nature of the intorphase boundaries. Specifically, important contributions to the strengthening can result from the incompatibility of slip across incoherent boundaries, as in equiaxed structure, from an interaction of dislocations with the interface dislocations that make up semi-coherent boundaries as in the lamellar structure, and an interaction of dislocations with the boundaries due to the discontinuity in elastic modulus at the interface. At high temperatures grain boundary shear may weaken material containing incoherent boundaries." @default.
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- W2002401241 date "1970-03-01" @default.
- W2002401241 modified "2023-10-17" @default.
- W2002401241 title "Strengthening of lamellar vs. equiaxed Ag-Cu eutectic" @default.
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- W2002401241 doi "https://doi.org/10.1016/0001-6160(70)90146-x" @default.
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