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Influence of Dynamic Strain Aging on Tensile Deformation Behavior of Alloy 617

机译:动态应变时效对617合金拉伸变形行为的影响

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摘要

To investigate the dynamic strain aging (DSA) behavior of Alloy 617, high-temperature tensile tests were carried out with strain rates variations of 10(-3)/s, 10(-4)/s, and 10(-5)/s from 24 degrees C to 950 degrees C. Five flow relationships, Hollomon, Ludwik, Swift, Ludwigson, and Voce, were applied to describe the tensile true stress-strain curves, and the DSA region was defined. In describing the tensile curves, Ludwigson's equation was superior to the other equations, and the DSA region was adequately defined by this equation as plateaus at intermediate temperatures from 200 degrees C to 700 degrees C. It was identified that Alloy 617 is dominated by three types of serrations, known as Types D, A+B, and C. The activation energy values for each serration type were obtained by the Arrhenius equation. By using the obtained activation energy values, the serrated yielding map and the DSA mechanism were drawn and manifested. In addition, the relationship between the tensile strength and strain rate at higher temperatures above 700 degrees C was found to be closely related to the amounts of slip lines. In the scanning electron microscope (SEM) fractographs, there was a significant difference at the low, intermediate, and high temperatures, but almost the same to the three strain rates. Copyright (C) 2016, Published by Elsevier Korea LLC on behalf of Korean Nuclear Society.
机译:为了研究617合金的动态应变时效(DSA)行为,以10(-3)/ s,10(-4)/ s和10(-5)/从24摄氏度到950摄氏度。应用Hollomon,Ludwik,Swift,Ludwigson和Voce的五个流动关系来描述拉伸真实应力-应变曲线,并定义了DSA区域。在描述拉伸曲线时,Ludwigson方程优于其他方程,并且通过该方程充分定义了DSA区域为200℃至700℃的中间温度下的平稳期。确定了617合金主要由三种类型组成锯齿,称为D,A + B和C型。通过Arrhenius方程获得每种锯齿类型的活化能值。通过使用获得的活化能值,绘制并显示出锯齿状屈服图和DSA机理。另外,发现在高于700℃的较高温度下抗拉强度与应变率之间的关系与滑移线的量密切相关。在扫描电子显微镜(SEM)断裂仪中,在低温,中温和高温下存在显着差异,但在三种应变速率下几乎相同。版权所有(C)2016,由Elsevier Korea LLC代表韩国核协会出版。

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