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Study of diffusion creep accompanying superplastic deformation of the alloy ZhS6KP

  • Solid State Physics
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Abstract

The development of diffusion creep (DC) accompanying superplastic deformation (SPD) of the highly doped nickel alloy ZhS6KP is studied based on an investigation of the redistribution of dispersed intragrain deposits of the γ′ phase of Ni3(Al, Ti). Deposit-free zones (DFZ) are formed in the alloy, held at the temperature of SPD and accompanying deformation at the grain boundaries. The contribution of DC to the deformation was determined from a comparative analysis of the width of the DFZ in the deformed and undeformed parts of the samples for different grain sizes and rates of DC taking into account diffusion accommodation. It was established that for the optimum rate of SPD the upper limit of the contribution of DC to deformation for 2-μm grains does not exceed 11%. It is concluded, based on the distribution of DFZ, that the effect of DC accompanying SPD is determined by diffusion fluxes, associated with the local concentration of stress accompanying the development of grain-boundary slipping.

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Translated from Izvestiya Vysshikh Uchebnykh Zavedenii, Fizika, No. 6, pp. 40–45, June, 1986.

In conclusion, we thank Yu. M. Mishin for a useful discussion of the results.

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Aleshin, G.N., Valiev, R.Z. & Kazykhanov, V.U. Study of diffusion creep accompanying superplastic deformation of the alloy ZhS6KP. Soviet Physics Journal 29, 459–463 (1986). https://doi.org/10.1007/BF00898012

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  • DOI: https://doi.org/10.1007/BF00898012

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