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Investigation of the yield process by deformation luminescence of X-ray irradiated KCl:Ca2+

机译:Investigation of the yield process by deformation luminescence of X-ray irradiated KCl:Ca2+

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摘要

It is found that deformation luminescence gives us information about the microscopic yield process of X-ray irradiated KCl:Ca2+. The stress-strain curve has a macroscopic yield point. But we find that luminescence appears to start before the macroscopic yield. This means that dislocation begin to move before the macroscopic yield because deformation luminescence is attributed to radiation-induced dislocation motion. The beginning of luminescence is considered to be the microscopic yield. Investigating the dependence of microscopic yield stress on strain rate and impurity concentration gives us additional information. The activation volume obtained from the dependence of microscopic yield stress on strain rate is comparable to the value estimated from the concentration of impurity. Then the dislocation starts to move overcoming impurity-vacancy dipoles as obstacles to dislocation motion. The dislocation density starts to increase at the microscopic yield point and then sharply increases to the macroscopic yield. © 2011 Elsevier Ltd. All rights reserved.
机译:发现变形发光为我们提供了有关X射线辐照的KCl:Ca2 +的微观屈服过程的信息。应力-应变曲线具有宏观的屈服点。但是我们发现发光似乎始于宏观产量。这意味着位错在宏观屈服之前就开始移动,因为变形发光归因于辐射引起的位错运动。发光的开始被认为是微观产量。研究微观屈服应力对应变率和杂质浓度的依赖性为我们提供了更多信息。由微观屈服应力对应变速率的依赖性所获得的活化体积与根据杂质浓度估算的值相当。然后,位错开始克服杂质空位偶极子,成为位错运动的障碍。位错密度在微观屈服点开始增加,然后急剧增加到宏观屈服。 ©2011 Elsevier Ltd.保留所有权利。

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