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Microstructure, mechanical properties, and thermal stability of lean, copper- free silver alloy subjected to equal channel angular pressing (ECAP) and subsequent post-processing

机译:微观结构,机械性能和瘦的稀薄银合金经受相等通道角压(ECAP)和后续后处理的

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摘要

Various paths of equal channel angular pressing (ECAP) and conventional post-deformation via forging and rolling were performed to improve the mechanical properties (particularly, the strength and hardness) of a copper-free silver alloy. The microstructure was investigated with optical and scanning electron microscopy. The primary grain size of approximately 130 mu m was significantly refined to ultrafine-grained (UFG) conditions with mean grain sizes of 0.6 mu m and 0.5 mu m via ECAP and ECAP with forging and rolling, respectively. The remarkable improvement of the mechanical properties was confirmed via hardness measurements and tensile and compression tests. ECAP and subsequent forging and rolling increased the initial hardness and tensile yield strength by +234% and + 355%, respectively. Furthermore, ECAP led to a much more homogeneous hardness distribution over the entire cross-sections of the bars. The thermal stability of the UFG material at room temperature, 100 degrees C, and 150 degrees C was maintained for at least 27 months, 1000 h and 4 h, respectively. Finally, the UFG state exhibited a better tarnishing resistance than the coarse-grained state.Thus, ECAP can overcome the most significant weaknesses of lean, silver-based alloys (i.e. poor mechanical and tarnishing properties), thereby creating opportunities for their wider use.
机译:通过锻造和轧制进行等于沟道角压(ECAP)和传统的变形的各种路径,以改善无铜银合金的机械性能(特别是强度和硬度)。用光学和扫描电子显微镜研究微观结构。大约130μmm的初级粒度大致精制到超细晶粒(UFG)条件,平均晶粒尺寸为0.6μm和0.5μm,分别通过锻造和轧制。通过硬度测量和拉伸和压缩试验证实了机械性能的显着改善。 ECAP和随后的锻造和轧制分别增加了初始硬度和拉伸屈服强度分别+ 234%和+ 355%。此外,ECAP在条形的整个横截面上导致了更加均匀的硬度分布。在室温下,100℃和150℃的UFG材料的热稳定性分别保持至少27个月,1000小时和4小时。最后,UFG状态表现出比粗粒状态更好的旋气性抗性。因此,ECAP可以克服瘦薄银基合金的最显着弱点(即机械和滑动性能差),从而为其更广泛使用的机会。

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