Abstract
The amount of mass transfer in bimetallic ribbons produced by cold-cladding is measured by secondary ion mass spectroscopy. The studies included measurement of the variation of the amount of mass transfer versus relative deformation of the metals after cladding, the nature of the metals, and the means of surface preparation. Bimetallic ribbons were investigated in which Al was clad with Cu, Ni, Fe, Ta, and Nb, while Cu was clad with Ni and Fe. A linear relationship between the amount of mass transfer and the degree of relative deformation of the metals is established and for small deformations a deviation from a linear function is observed. The amount of mass transfer of aluminum for an identical degree of deformation increases in proportion to the increase in the hardness of the base metal. The amount of mass transfer of both cladding metals is observed to be similar when metals with similar mechanical properties, Ni-Cu and Fe-Cu, are used.
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Translated from Izvestiya Vysshikh Uchebnykh Zavedenii, Fizika, No. 6, pp. 61–66, June, 1986.
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Koval', A.G., Isaev, F.M., Khozikov, V.S. et al. Study of metal adhesion by secondary ion mass spectroscopy. Soviet Physics Journal 29, 477–482 (1986). https://doi.org/10.1007/BF00898016
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DOI: https://doi.org/10.1007/BF00898016