Line Analysis of Changes in the Deformation Zone During Lüders Band Propagation

Tin Brli, Ć. StojaREŠKOVI, Iva Deanovi, Ć. IvanSAMARDŽI
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Abstract

: In order to determine the Lüders band propagation along the deformation zone length and width as affected by the force action direction, a detailed line analysis is performed by applying thermography and digital image correlation (DIC) during static tensile test at different test positions. The test is stopped at the point when the Lüders band propagation reached its middle to analyse temperature changes and deformations occurring in front of, on and behind the Lüders band front. Line analysis of the test samples confirmed that there are changes in the distribution of temperature and deformations. Across the width of the test sample, there are oscillations and differences in the distribution of temperature changes in the deformation zone. However, the same analysis showed that there are no differences in the change of deformations across the width of the test sample, except in the zone behind the Lüders band front where the Lüders band propagated. The influence of microstructure, i.e. the different dislocation density and the interaction of dislocations with fine precipitates, proved to be the cause of change in temperature and deformations measured at the moment when the Lüders band propagation reached its middle.
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吕德斯带传播过程中变形区变化的线性分析
:为了确定受力作用方向影响的 Lüders 带沿变形区长度和宽度的传播情况,在不同测试位置进行静态拉伸测试时,通过应用热成像和数字图像相关性(DIC)进行了详细的线分析。试验在吕德斯带传播到中间位置时停止,以分析吕德斯带前面、上面和后面发生的温度变化和变形。对测试样品的线性分析表明,温度和变形的分布发生了变化。在测试样品的整个宽度上,变形区的温度变化分布存在振荡和差异。然而,同样的分析表明,除了在吕德斯带前沿后方吕德斯带传播的区域外,整个测试样品宽度上的变形变化没有差异。微观结构的影响,即不同的位错密度和位错与细小析出物的相互作用,被证明是在吕德斯带扩展到中间位置时测量到的温度和变形变化的原因。
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