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Toner/Transfer Member Adhesion Response to Environment-Induced Material Property Changes, and Their Impact on Transfer Fields

机译:碳粉/转印元件对环境引起的材料特性变化的粘附响应及其对转印场的影响

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Toner adhesion to substrates has been demonstrated to be a strong function of temperature. Previous work has suggested that particle deformation due to surface forces increases with reduced material stiffness at higher temperatures, thus increasing contact surface area and increasing adhesion. Toner Storage and Loss Modulus were measured for a variety of toners both on the individual toner scale and on the macro scale. These measurements showed material property changes in the region below the glass transition temperature that could account for the measured increase in toner adhesion. Toner adhesion measurements were then reconciled with transfer field forces to reveal an interaction between transfer fields, stored energy, and toner adhesion.
机译:碳粉对基材的粘附已证明是温度的强函数。先前的工作表明,在较高温度下,由于表面力引起的颗粒变形会随着材料刚度的降低而增加,从而增加了接触表面积并增加了附着力。在单个墨粉刻度和宏观刻度上都测量了各种墨粉的墨粉存储和损耗模量。这些测量结果表明,在玻璃化转变温度以下的区域中,材料性能发生了变化,这可能说明了墨粉附着力的增加。然后将墨粉附着力测量值与转印场力进行调和,以揭示转印场,存储的能量和墨粉附着力之间的相互作用。

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