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首页> 外文期刊>Journal of Materials Science >MICROSTRUCTURAL EVOLUTION OF A COLD-DEFORMED 6061AL REINFORCED WITH SIC PARTICLES DURING SUBSEQUENT ANNEALING
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MICROSTRUCTURAL EVOLUTION OF A COLD-DEFORMED 6061AL REINFORCED WITH SIC PARTICLES DURING SUBSEQUENT ANNEALING

机译:后续退火过程中,经SiC颗粒增强的冷变形6061AL的微观结构演变

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The microstructural development during annealing of a cold-deformed 6061Al metal matrix composite (MMC) reinforced with either 3 or 20 mu m diameter SIC particles has been investigated. The composites were compressed to low (< 10%) levels of strain and then annealed at either 350 or 450 degrees C for different times. Microstructure examination was carried out by transmission electron microscopy and optical microscopy. The results reveal that prior grain boundaries and constituent particles are the dominant sites for recrystallization in both composites, although some nucleation was observed adjacent to the larger SiC particles. The concurrent presence of Mg2Si precipitates affected the progress of recrystallization. [References: 14]
机译:研究了用3或20μm直径的SIC颗粒增强的冷变形6061Al金属基复合材料(MMC)在退火过程中的微观结构发展。将复合材料压缩至低(<10%)应变水平,然后在350或450摄氏度下退火不同的时间。通过透射电子显微镜和光学显微镜进行显微结构检查。结果表明,尽管在较大的SiC颗粒附近观察到一些成核作用,但两种复合材料中先前的晶界和组成颗粒都是再结晶的主要位置。 Mg2Si析出物的同时存在影响了重结晶的进程。 [参考:14]

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