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Microstructure and Properties of a Fe-Cu Composite Processed by HPT Powder Consolidation

机译:HPT粉末固结处理的Fe-Cu复合材料的组织和性能

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A method to produce nanocrystalline Fe-Cu composites by means of high-pressure torsion (HPT) deformation is presented. Mixtures of micrometer sized powders of Fe and Cu with different ratios of the two components were precompacted and subsequently deformed by HPT at room temperature to a certain amount of strain. Afterwards, new samples were cut out of these previously deformed samples and further HPT deformation was conducted. The evolution of the microstructure during the different steps of the HPT process and the resulting microstructure of the composites were investigated by scanning electron microscopy. In summary it could be shown that the final attainable grain sizes in the composite materials in the two step process are much smaller than in the simply HPT deformed composites. The reduction of the grain size is also reflected in an enhancement of the hardness.
机译:提出了一种通过高压扭转(HPT)变形制备纳米晶Fe-Cu复合材料的方法。将具有两种比例不同的两种尺寸的Fe和Cu的微米级粉末混合物预压实,然后在室温下通过HPT变形至一定量的应变。之后,从这些先前变形的样品中切出新的样品,然后进行进一步的HPT变形。通过扫描电子显微镜研究了HPT过程的不同步骤中微观结构的演变以及所得复合材料的微观结构。总而言之,可以表明,在两步法中,复合材料中最终可达到的晶粒尺寸比单纯的HPT变形复合材料要小得多。晶粒尺寸的减小也反映在硬度的提高上。

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