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首页> 外文期刊>Archives of Metallurgy and Materials >Influence of Solution and Aging Treatment Conditions on the Formation of Ultrafine-Grained Structure of CuFe2 Alloy Processed by Rolling with Cyclic Movement of Rolls
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Influence of Solution and Aging Treatment Conditions on the Formation of Ultrafine-Grained Structure of CuFe2 Alloy Processed by Rolling with Cyclic Movement of Rolls

机译:固溶和时效处理条件对轧制循环轧制CuFe 2 合金超细晶组织形成的影响

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The effect of second phase particles on grain refinement in CuFe2 alloy has been investigated by using rolling with the cyclic movement of rolls (RCMR) method. Two different population of second phase particles of Fe: coherent, about 10 nm in diameter and about 100 nm in size were obtained by applying aging treatment followed at 500?°C for 2 h and at 700?°C for 24 h respectively. In addition, solution treated samples were deformed by RCMR method at the same parameters. The microstructures of the CuFe2 alloy were analyzed using light microscope (LM), electron backscattered diffraction (EBSD) microscope technique and scanning transmission electron microscope (STEM). The presence of high-density of coherent Fe particles in the matrix inhibits recovery process and in the result obtained grain/subgrain boundaries have diffused character and are weakly visible. The largest particles which are not coherent with the matrix act as an effective barrier against the boundary motion.
机译:通过使用轧辊循环运动(RCMR)方法研究了第二相颗粒对CuFe2合金晶粒细化的影响。通过分别进行时效处理,分别在500°C下2 h和​​700°C下24 h进行处理,获得了直径为10 nm和尺寸为100 nm的相干的两个不同的第二相铁粒子。另外,固溶处理过的样品在相同参数下通过RCMR方法变形。使用光学显微镜(LM),电子背散射衍射(EBSD)显微镜技术和扫描透射电子显微镜(STEM)对CuFe2合金的微观结构进行了分析。基体中高密度的相干铁颗粒的存在抑制了回收过程,结果所得的晶界/亚晶界具有弥散性,并且微弱可见。与基体不相干的最大颗粒充当了抵抗边界运动的有效屏障。

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