The microstructure of deformed nanocrystalline Ag and Ag/Fe alloy

Satoshi Ichikawa , Kun’ichi Miyazawa , Hideki Ichinose , Kunio Ito
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引用次数: 10

Abstract

Structures of alloys prepared by an inert-gas condensation and compaction method and subsequently rolled were examined with interest in the deformation mechanism. The initial grain size is found to be smaller in the alloy than in the single component material, but XRD measurements indicate that a normal preferred orientation of rolling is developed in the Ag/Fe alloy slightly but not in the Ag at all. The grain growth occurs more or less but hardness is not increased by deformation in both materials. Strain contrasts along grain boundaries are observed by TEM, but tangled dislocations are found in grain interior of neither of the deformed materials. The observation has indicated that the dominant mechanism of deformation in the examined nanocrystalline materials, especially in the single component material, is considered to be grain boundary sliding accomplished by a diffusional process.

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变形纳米晶Ag和Ag/Fe合金的显微组织
用惰性气体冷凝和压实法制备的合金的组织,随后轧制,感兴趣的变形机理进行了研究。合金的初始晶粒尺寸比单组分材料小,但XRD测量表明,Ag/Fe合金中有轻微的正常优先取向轧制,而Ag则没有。两种材料的变形都或多或少地增加了晶粒,但硬度没有增加。透射电镜观察到沿晶界的应变差异,但在两种变形材料的晶粒内部均未发现缠结位错。结果表明,纳米晶材料,特别是单组分材料的主要变形机制是由扩散过程完成的晶界滑动。
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