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- W2935863946 abstract "The results of experimental investigations of the strain properties of film alloys based on Ni and Fe with longitudinal strain in the intervals Δε l 1 = (0–1)%, Δε l 2 = (0–2)% and Δε l 3 = (0–3)%. It is established that films exhibit nonlinearity on the dependence of the differential coefficient of longitudinal strain coefficient γ ldif versus strain, which is characterized by a local maximum at the magnitude of strain ε ltr . An additional analysis indicates that the appearance of a maximum can be explained by the realization of the nonlinear dependence of the resistance versus strain, that is, the transition from elastic to quasi-elastic or from elastic to plastic. The experimental dependences of ε ltr and γ lint on the thickness and Fe atoms concentration in the film alloy are obtained. If in the case of ε ltr the expected size dependence is observed, in the case of γ lint an abnormal effect (an increase γ lint with a thickness increase) occurs, which is takes place in film alloys. The reason for such anomalies in comparison with one-component films can be explained by different contributions of the surface (Fuch) and grain-boundary (Mayadas-Shatzkes) of the electron scattering in value γ lint in film alloys at the quasi-elastic or plastic strain. • Films exhibit nonlinearity on the dependence of the differential coefficient of longitudinal strain coefficient vs strain. • The effect is related to the nonlinear deformation of the resistance change caused by the change in the type of deformation. • The specified features of the strain effect can be explained in the framework of theoretical models of the strain effect." @default.
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- W2935863946 date "2019-07-01" @default.
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- W2935863946 title "Strain effect in film materials NiXFe1–X/S" @default.
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- W2935863946 doi "https://doi.org/10.1016/j.vacuum.2019.04.015" @default.
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