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Rheological Properties of COC Toner Binder Resins (TOPAS~R)

机译:COC调色剂树脂的流变性能(TOPAS〜R)

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摘要

This study describes the progress in toner binder design to achieve low fusing temperatures as required for new energy regulations like the ZESM (Zero Energy Stand-by Mode). Conventionally low temperature fusing is realized by reducing the molar mass of the binder polymer. In parallel with a reduced melt viscosity the glass transitions temperature Tg decreases as well resulting in a poor storage ability. This phenomenon is reviewed for typical toner binder resins like styrene acrylics and polyester and compared to cyclo-olefin-copolymers COC derived from ethylene and norbonene (trade name: Topas~R of Ticona, Germany). For these new materials the glass transition temperature is easily adjusted by incorporating different amounts of the cyclic olefin into the polymer meaning that the Tg of COC can be controlled independently of molar mass. Thus an optimum balance between high flowablity necessary for low temperature fusing and excellent anti blocking properties is obtained.
机译:这项研究描述了为达到新能源法规(如ZESM(零能耗待机模式))所需的低定影温度而设计的碳粉粘合剂的进展。常规地,低温熔融通过降低粘合剂聚合物的摩尔质量来实现。在熔融粘度降低的同时,玻璃化转变温度Tg也降低,导致储存能力差。对于典型的调色剂粘合剂树脂(如苯乙烯丙烯酸和聚酯),已对这种现象进行了综述,并将其与衍生自乙烯和降冰片烯(商品名称:Ticona的Topas〜R)的环烯烃共聚物COC进行了比较。对于这些新材料,可以通过将不同量的环烯烃掺入聚合物中来轻松调节玻璃化转变温度,这意味着可以独立于摩尔质量来控制COC的Tg。因此,在低温定影所需的高流动性与优异的抗粘连性之间获得了最佳的平衡。

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