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Thermo-kinetic modelling of the giant Snoek effect in carbon-supersaturated iron

机译:碳固化铁巨型SNOEK效应的热动力学建模

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摘要

Snoek relaxation in interstitial bcc solid solutions is the origin of the Snoek peak in frequency-dependent and temperature-dependent internal friction measurements. When applied to low-carbon steels, the internal friction profiles show a linear dependence of the peak height with carbon content. However, recent Monte Carlo simulations of frequency-dependent internal friction exhibited a non-linear giant peak height at high carbon contents. To investigate this effect in temperature-dependent internal friction, we developed a thermo-kinetic mean-field theory of the Snoek relaxation phenomenon. By taking into account the collective behaviour of the interstitial atoms, our theory predicts (i) a non-linear dependence of the peak height with composition when approaching the order & ndash;disorder transition of the alloy; (ii) a shift in the temperature of the peak; (iii) a composition-dependent activation enthalpy of the relaxation time. The theory is exemplified by the case of carbon-supersaturated iron.
机译:间隙bcc固溶体中的Snoek弛豫是频率相关和温度相关内耗测量中Snoek峰的起源。当应用于低碳钢时,内耗曲线显示出峰值高度与碳含量的线性关系。然而,最近对频率相关内耗的蒙特卡罗模拟显示,在高碳含量下,非线性巨峰高度。为了研究温度相关内耗中的这种效应,我们发展了Snoek弛豫现象的热动平均场理论。通过考虑间隙原子的集体行为,我们的理论预测(i)当接近顺序时,峰高与成分呈非线性关系–合金的无序转变;(ii)峰值温度的变化;(iii)弛豫时间的成分相关活化焓。碳过饱和铁的例子说明了这一理论。

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