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首页> 外文期刊>Transactions of Nonferrous Metals Society of China >Microstructure characteristics of as-surface nanocrystallized 1420 aluminum alloy by high-energy shot peening
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Microstructure characteristics of as-surface nanocrystallized 1420 aluminum alloy by high-energy shot peening

机译:高能喷丸处理表面纳米晶1420铝合金的显微组织特征

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A nanostructured surface layer was fabricated on 1420 aluminum alloy by high-energy shot peening. Microstructures were characterized by X-ray diffractometer(XRD), transmission electron microscope (TEM) and high-resolution electron microscope ( HRTEM), and microhardness measurement was conducted along the depth from top surface layer to matrix of the sample peened for 30 min. The results show that a nanocrystalline layer about 20 μm in thickness is formed on the surface of the sample after high-energy shot peening, in which the grain size is changed from about 20 nm to 100 nm. In the surface layer of 20 - 50 μm in depth, the microstructure consists of sub-micron grains. The surface nanocrystallization is accomplished by dislocation slip. The microhardness of the top surface nanostructured layer is enhanced obviously after high-energy shot peening(HESP) compared with that of the coarse-grained matrix.
机译:通过高能喷丸处理在1420铝合金上制备了纳米结构表面层。用X射线衍射仪(XRD),透射电子显微镜(TEM)和高分辨率电子显微镜(HRTEM)对组织进行了表征,并沿表面硬度从上表面层到被喷丸样品的基体进行了30分钟的显微硬度测量。结果表明,在高能喷丸处理之后,在样品的表面上形成了厚度约20μm的纳米晶层,其中,晶粒尺寸从约20nm变为100nm。在深度为20-50μm的表面层中,微观结构由亚微米晶粒组成。通过位错滑移来完成表面纳米晶化。高能喷丸处理(HESP)后,表面纳米结构层的显微硬度明显高于粗晶基体。

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