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Structural and Chemical Characterization of Cu-Ag and Ni-Ag Nanocomposites Synthesized by High-Energy Ball-Milling

机译:高能球磨合成Cu-Ag和Ni-Ag纳米复合材料的结构和化学表征

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Mechanical alloying is widely used to synthesize nanostructured materials. In the case of alloys with positive heat of mixing, it is also sometimes possible to force a solid solution by low temperature milling (e.g., Cu-Ag), or to stabilize a nanocomposite by intermediate temperature milling (e.g., Cu-Ag or Ni-Ag). In order to gain insight on the fundamental understanding of these driven phase transformations, and in order to be able to optimize these nanostructures, a systematic study on the steady-states reached by temperature-controlled high energy ball-milling has been undertaken. In addition to standard x-ray diffraction and scanning calorimetry measurements, field ion microscope atom probe (AP), transmission and transmission scanning electron microscopy (TEM, STEM) are used to characterize the ball-milled powders. It is shown that the Cu-Ag microstructure after low temperature milling can exhibit a pronounced texture, with a complex microstructure. At higher milling temperature dynamic recrystallization leads to small equiaxed nanograins that are randomly oriented. In the Ni-Ag case, the absence of texture in the Ni-rich phase, as well as the very small grain size, suggest that full mixing of the species cannot take place because of the differences in mechanical properties of the terminal phases.
机译:机械合金化被广泛用于合成纳米结构材料。对于具有正混合热的合金,有时还可以通过低温研磨(例如Cu-Ag)来迫使固溶体,或者通过中温研磨来稳定纳米复合物(例如Cu-Ag或Ni) -Ag)。为了获得对这些驱动相变的基本理解的见解,并且为了能够优化这些纳米结构,已对温度控制的高能球磨所达到的稳态进行了系统的研究。除了标准的X射线衍射和扫描量热法测量外,还使用场离子显微镜原子探针(AP),透射和透射扫描电子显微镜(TEM,STEM)表征球磨粉。结果表明,低温研磨后的Cu-Ag微观结构可以表现出明显的织构,具有复杂的微观结构。在较高的研磨温度下,动态重结晶会导致随机取向的小的等轴纳米颗粒。在Ni-Ag的情况下,富Ni相中没有质构以及非常小的晶粒尺寸,这表明由于末端相机械性能的差异,物质无法充分混合。

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