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Effect of expansion temperature of expandable graphite on microstructure evolution of expanded graphite during high-energy ball-milling

机译:高能球磨过程中可膨胀石墨的膨胀温度对膨胀石墨组织演变的影响

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摘要

Two expanded graphites (EG), marked as EG-1 and EG-2, were prepared by rapid heating of expandable graphite to 600 and 1000 °C, respectively, and ball milled in a high-energy mill (planetary-type) under air atmosphere. The microstructure evolution of the ball-milled samples was characterized by X-ray diffraction (XRD) and high resolution transmission electron microscopy (HRTEM). XRD analysis shows that the evolution degree of the average crystallite thickness along the c-axis (L_c) of EG-2 is lower than that of EG-1 during the milling process. From the HRTEM images of the samples after 100 h ball-milling, slightly curved graphene planes can be frequently observed both in the two EGs, however, EG-1 and EG-2 exhibit sharply curved graphene planes and smoothly curved graphene planes with high bending angles, respectively.
机译:通过分别将可膨胀石墨分别快速加热至600和1000°C,并在高能磨机(行星式)中在空气下球磨,制备了两种分别标记为EG-1和EG-2的膨胀石墨(EG)。大气层。球磨样品的微观结构演变通过X射线衍射(XRD)和高分辨率透射电子显微镜(HRTEM)表征。 XRD分析表明,在研磨过程中,EG-2的平均微晶厚度沿EG轴(L_c)的演化程度低于EG-1。从球磨100小时后的样品HRTEM图像中,可以在两个EG中经常观察到轻微弯曲的石墨烯平面,但是EG-1和EG-2呈现出急剧弯曲的石墨烯平面和具有高弯曲度的平滑弯曲的石墨烯平面角度。

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