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3D-Atom Probe investigation of vacancy induced interdiffusion during High Pressure Torsion deformation

机译:3D-原子探测在高压扭转变形期间空位诱导的间隔调查研究

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Concentration gradients resulting from long range diffusion during Severe Plastic Deformation (SPD) have been investigated with the 3D Atom Probe technique (3D-AP). First, in a pearlitic steel where alloying elements (Mn, Si and Cr) are partitioned between the ferrite and carbides in the non-deformed state. After processing by High Pressure Torsion (HPT), they are homogeneously distributed in the nanostracture, indicating that long range diffusion occurred along with the dissolution of carbides. 3D-AP data of a Cu-Fe composite processed by HPT show as well a significant interdiffusion of Cu and Fe, probably promoted by additional vacancies. On the basis of these experimental data, and using the theory described for irradiated materials, vacancy fluxes and vacancy production rates were estimated assuming that new vacancies are continuously produced and eliminated on grain boundaries.
机译:已经通过3D原子探针技术(3D-AP)研究了由严重塑性变形(SPD)期间的长距离扩散产生的浓度梯度。首先,在珠光体钢中,其中合金元素(Mn,Si和Cr)在铁氧体和非变形状态下在铁氧体和碳化物之间分配。在高压扭转(HPT)加工后,它们在纳米分子中均匀分布,表明在碳化物溶解中发生了长距离扩散。 HPT展示的Cu-Fe复合材料的3D-AP数据也是Cu和Fe的显着相互作用,可能是通过额外的空缺促进的。在这些实验数据的基础上,并使用所描述的辐照材料的理论,假设在晶界不断产生并消除新的空位并消除了新的空位,估计空缺助量和空缺的生产率。

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