首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part B. Solid State Phenomena >Grain Refinement of 6061 Al alloy by the Modified Strain-Induced Melt- Activated(SIMA) Process for Semi-Solid Processing
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Grain Refinement of 6061 Al alloy by the Modified Strain-Induced Melt- Activated(SIMA) Process for Semi-Solid Processing

机译:半固态加工的改进应变诱导熔体活化(SIMA)工艺细化6061铝合金的晶粒

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摘要

The dynamic process of fine grain evolution of 6061 aluminum alloy during modified strain-induced, melt-activated (SIMA) process was studied. The modified SIMA process employed casting, two stage homogenization, warm multi-forging, and recrystallization and partial melting (RAP). Multi-forging was carried out at a strain rate of 9x10'3 s'1 to accumulate high strains, with decreasing temperature from 250 to 200 °C. The alloy multi-forged with the accumulated strain of about 12 and RAP at 640 °C for 10 min exhibited the uniform equiaxed recrystallized grain structure. Accordingly, it was evident that multi-forging was very effective on grain refinement and grain size unifonnity. The present modified SIMA process was discussed as an alternative thermo-mechanical processing for preparing the alloys with fine grained structure for semi solid processing.
机译:研究了6061铝合金在改进的应变诱导,熔融活化(SIMA)过程中细晶粒演化的动态过程。改进的SIMA工艺采用铸造,两阶段均质化,温锻和二次结晶和部分熔化(RAP)。在温度从250降至200°C的情况下,以9x10'3 s'1的应变速率进行多次锻造以累积高应变。累积锻造的合金具有约12的累积应变和640°C的RAP 10分钟,表现出均匀的等轴重结晶晶粒结构。因此,很明显,多重锻造对晶粒细化和晶粒尺寸均匀性非常有效。讨论了本改进的SIMA工艺,作为一种替代的热机械工艺,用于制备具有细晶结构的合金用于半固态加工。

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