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Structural investigation and mechanical properties of a representative of a new class of materials: Nanograined metallic glasses

机译:新型材料代表的结构研究和力学性能:纳米粒金属玻璃

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A new class of materials: Au-based nanograined metallic glasses (NGMGs) were synthesized using magnetron sputtering with powder targets. A detailed study by x-ray diffraction and high-resolution transmission electron microscopy (TEM) documents the unique nanoscale granular structure of the Au-based NGMG. This material inherited the good mechanical properties of metallic glasses, showing a high hardness of ~5.3 GPa and a low elastic modulus of ~79 GPa. In addition, in contrast to most MGs the nanoglassy particles can deform along the loading direction, exhibiting unique tensile elongation up to 100%. During thermal crystallization of NGMG material, even smaller sized Au solid solution nanocrystals are formed within the glassy nanograins, offering a new way for production of the nanocomposites with tailored structural length scales.
机译:新型材料:使用磁控溅射和粉末靶材合成金基纳米晶粒金属玻璃(NGMG)。通过x射线衍射和高分辨率透射电子显微镜(TEM)进行的详细研究记录了基于金的NGMG的独特纳米级颗粒结构。该材料继承了金属玻璃的良好机械性能,显示出约5.3 GPa的高硬度和约79 GPa的低弹性模量。此外,与大多数MG相比,纳米玻璃颗粒可沿加载方向变形,表现出高达100%的独特拉伸伸长率。在NGMG材料的热结晶过程中,甚至较小尺寸的Au固溶体纳米晶体也会在玻璃状纳米颗粒中形成,这为生产具有定制结构长度尺度的纳米复合材料提供了新途径。

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