A book of Russian verse, translated into English by various by Bowra, C.M.

By Bowra, C.M.

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The shape memory effect is observed for the Ti–26Nb alloy deformed at temperatures between 193 and 273 K. Superelastic behavior is seen at 293 K, although the shape recovery was incomplete. For the Ti–27Nb alloy, superelastic behavior is observed at temperatures between 193 and 293 K. The Ti–28Nb alloy exhibited good superelastic behavior at 193 K. The residual strain increased with increasing temperature. It is also seen that the apparent yield stress, which corresponds to the stress for the inducing martensitic transformation, increases with increasing temperature.

11 Effect of cyclic deformation on the stress–strain curves of Ti–Ni alloys subjected to various heat treatments. % Ni alloy which was tested at 293 K. mode subjected to such a material in use is commonly a loading–unloading cycling without or with heating after each unloading. % Ni alloy. The data are represented by two straight lines. The deformation mode for each region is different form the others; the short life region is for cyclic stress-induced transformation, while the long-life region is for cyclic elastic deformation.

Superelastic behavior is seen at 293 K, although the shape recovery was incomplete. For the Ti–27Nb alloy, superelastic behavior is observed at temperatures between 193 and 293 K. The Ti–28Nb alloy exhibited good superelastic behavior at 193 K. The residual strain increased with increasing temperature. It is also seen that the apparent yield stress, which corresponds to the stress for the inducing martensitic transformation, increases with increasing temperature. % Nb alloys. © Woodhead Publishing Limited, 2011 34 Shape memory and superelastic alloys Stress (MPa) Clausius–Clapeyron relationship.

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