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Fractal analysis of the influence of surface roughness of toner particles on their flow properties and adhesion behavior

机译:分形分析调色剂颗粒表面粗糙度对其流动性和粘附行为的影响

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摘要

In order to quantitatively evaluate the relationship between the minute roughness and powder behaviors such as macroscopic shear behavior and particle-particle interaction of toner particles with different particle surfaces,the FE-SEM image of a toner particle was processed in to a line image,and the particle outline image was analyzed using fractal dimension.In the fractal dimensional analyses,when the scaling was not less than or equal to 1/20 of the particle diameter,the fractal dimension was very large;it was inferred that the scaling was not suitable for showing a minute structure on the surface of the particle.In this study,the scaling was adjusted to less than or equal to 1/20 of the particle diameter.The relationship between the fractal dimension D and RMS surface roughness of the toner particle,which was determined by atomic force microscopy,had a weak first positive correlation.Subsequently,the influence of the surface coverage of SiO2 on the fractal dimension was examined.It was observed that the fractal dimension increased with the surface coverage of SiO2 in the condition of less than or equal to 26%.The relationships between the fractal dimension and the flow properties were examined using the rotary shear tester with conical rotor.When the mean particle diameter was almost constant,the fractal dimension was inversely proportional to the macroscopic shearing torque.Moreover,the relationships between the fractal dimension and the particle-particle interactions were examined using colloid probe AFM.It was observed that the fractal dimension was inversely proportional to the microscopic adhesion force.The relationship between the fractal dimension and the shearing force calculated by using torque was almost identical to that between the fractal dimension and the particle-particle interaction.
机译:为了定量评估微小粗糙度与粉末行为之间的关系,例如宏观剪切行为和具有不同颗粒表面的调色剂颗粒之间的颗粒间相互作用,将调色剂颗粒的FE-SEM图像处理成线图像,然后在分形维数分析中,当标度不小于粒径的1/20时,分形维数很大;推断该标度不适合在本研究中,将缩放比例调整为小于或等于粒径的1/20。分形维数D与调色剂颗粒的RMS表面粗糙度之间的关系,由原子力显微镜确定,它具有较弱的第一正相关性。随后,研究了SiO2的表面覆盖率对分形维数的影响。观察到在小于等于26%的条件下,分形维数随SiO2的表面覆盖率的增加而增大。使用带有圆锥形转子的旋转剪切测试仪检查了分形维数与流动性能之间的关系。直径几乎是恒定的,分形维数与宏观剪切扭矩成反比。此外,使用胶体探针AFM检查了分形维数与颗粒-颗粒相互作用的关系。分形维数与使用扭矩计算的剪切力之间的关系几乎与分形维数与颗粒-颗粒相互作用之间的关系相同。

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