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首页> 外文期刊>JSME International Journal. Series A, Solid mechanics and material engineering >Utilization of Powder Microstructure to Strengthening of Fe-Cu Alloy From Rapidly Solidified Powder
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Utilization of Powder Microstructure to Strengthening of Fe-Cu Alloy From Rapidly Solidified Powder

机译:利用粉末微结构从快速凝固的粉末中强化铁铜合金

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摘要

The strengthening mechanism of Fe-Cu alloy from rapidly solidified powder was investigated. The powder microstructure was changed by annealing. The as -atomized and annealed powders were consolidated by groove rolling at a warm temperature in order to avoid recrystallization and to maintain the powder microstructure. Copper was precipitated in the ferrite matrix and at the primary powder boundaries in all of the consolidated samples; the precipitation was coarser in the samples from the annealed powders. The results of the tensile testing showed strengthening occurred by the addition of copper in all the samples; the magnitude of the strengthening was larger in the samples from the as-atomized powder. The minute and uniform copper distribution in the samples from the as-atomized powder resulted in a greater strengthening effect.
机译:研究了快速凝固粉末对Fe-Cu合金的强化机理。通过退火改变粉末的微观结构。雾化和退火的粉末通过在温暖的温度下进行沟槽轧制而固结,以避免再结晶并保持粉末的微观结构。在所有固结样品中,铜在铁素体基体中和初级粉末边界处析出。退火粉末样品中的沉淀较粗。拉伸试验的结果表明,在所有样品中都加入了铜,从而使强度得到了提高。雾化粉末样品的强化强度更大。雾化后的粉末在样品中的微小而均匀的铜分布导致了更大的强化效果。

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