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Mechanical properties and deformation mechanisms of nanocrystalline Fe/Cu 60/40 composites

机译:纳米晶Fe / Cu 60/40复合材料的力学性能和变形机理

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摘要

The effect of grain size upon the strength of nanocrystalline iron/copper (Fe/Cu) composites has been explored. Composites of composition 60 Fe/40 Cu (by weight) were produced by consolidation of ball-milled powders, with as-processed grain size ranging from 80 to 150 nm. All composites displayed negligible strain hardening and a symmetric response in tension and compression. The strength increases with diminishing grain size, and the upper and lower yield points are a consequence of the dissolved carbon in the Fe phase. The nanocrystalline composites develop shear bands in both tension and compression, and the geometric evolution of these bands is determined. The width of each band and the average local shear strain within it increases with increasing global plastic strain. AFM measurements reveal that the shear strain within each band has strong spatial gradients.
机译:已经研究了晶粒尺寸对纳米晶铁/铜(Fe / Cu)复合材料强度的影响。通过固结球磨粉制备了组成为60 Fe / 40 Cu(重量比)的复合材料,加工后的晶粒尺寸为80至150 nm。所有复合材料在应变和拉伸方面均表现出微不足道的应变硬化和对称响应。强度随着晶粒尺寸的减小而增加,而较高和较低的屈服点是铁相中溶解的碳的结果。纳米晶复合材料在拉伸和压缩过程中均产生剪切带,并确定了这些带的几何演化。每个带的宽度和其中的平均局部剪切应变随着整体塑性应变的增加而增加。原子力显微镜的测量表明,每个带内的剪切应变具有很强的空间梯度。

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