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Bulge test characterization of static softening and dynamic instabilities in foils of al-based alloy

机译:抗施静力和动态施用能力的膨胀试验表征铝合金箔中的动态稳定性

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Effects of recovery and recrystallization on subsequent stress - strain behavior were studied in foils of non-age hardenable Al based alloy. A bulge testing device for mechanical testing of thin free standing films and foils, enabling the detection of large strains, was employed. The bulge tester was used at RT both for the predeformation of the foil in the biaxial mode and also for the study of softening after subsequent one-step annealing. Three stages of strength drop as a function of the annealing temperature were observed between RT and 590 °C. The contribution of different annealing processes to the softening was established using transmission electron microscopy. It was found that below 200 °C only redistribution of dislocations inside dislocation cells and refinement of the cell structure occurred. Between 200 °C and 380 °C the formation of a subgrain structure was observed. The softening process is terminated as partial recrystallization takes place at higher annealing temperatures. Dynamic interaction of solutes with dislocations was revealed during prestraining as well as poststraining of foils. This effect resulted in the appearance of a negative strain rate sensitivity and dynamic instabilities after appropriate prestraining and annealing conditions. The above results show that bulge testing of Al foils allows to study the successive annealing stages by measuring the most important macroscopic parameters of plastic deformation (yield stress, work hardening rate, ductility, strain rate sensitivity, etc.). These stages could be related to the microstructure evolution.
机译:在非年龄淬火Al基合金的箔中研究了回收和重结晶对随后应力 - 应变行为的影响。采用薄壁自由膜和箔的机械测试的凸起测试装置,从而采用检测大菌株。凸起测试仪在室温下使用,用于在双轴模式中的箔的预测,并且还用于在随后的一步退火后软化的研究。在室温和590℃之间观察到作为退火温度的函数的强度降的三个阶段。使用透射电子显微镜建立不同退火过程对软化的贡献。发现,低于200°C仅在位错细胞内的脱位再分布并发生细胞结构的细化。在200°C和380℃之间观察到粒结构的形成。软化过程终止,因为在更高的退火温度下发生部分重结晶。在抗剥离期间揭示了溶质溶质的动态相互作用,以及箔的后期。在适当的预磨损和退火条件后,这种效果导致负应变速率灵敏度和动态不稳定性的外观。上述结果表明的Al箔的该隆起测试允许通过测量塑性变形(屈服应力,加工硬化率,延性,应变率敏感性等)的最重要的宏观参数来研究连续退火阶段。这些阶段可能与微观结构演变有关。

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