首页> 外文会议>Digital fabrication 2011 : Technical programs and proceedings >Effect of Negative Externally-Added CCA Particles on Toner Charge
【24h】

Effect of Negative Externally-Added CCA Particles on Toner Charge

机译:外部负添加CCA颗粒对调色剂电荷的影响

获取原文
获取原文并翻译 | 示例

摘要

Particles of externally-additive-charge-control-agent (EA-CCA) were prepared by means of coacervation process and their effects on toner charge were investigated. EA-CCA particles comprised with metal oxide core particles of 110nm diameter and CCA molecules adhered on the core surface. Four kinds of negative charge control agent (CCA), which were boron complex (N-1), zinc complex (N-2), iron complex (N-3) and styrene-acrylate copolymer with sulfonic acid (N-4), were applied to EA-CCA, respectively. Tribo-charge of the mixture of model toner and EA-CCA was measured in the CCA concentration range up to 1, 000ppm against model toner by using blow off method. In both N-2 and N-4 added systems, tribo-charges were increased with increasing CCA concentration up to 1000ppm, in the range of these experiments. In other two CCA added systems, maximum region appeared in tribo-charge around 50ppm of CCA concentration. Relationships between tribo-charge and CCA concentration in all CCA show linear in smaller CCA concentration range, less than 20ppm. The former two kinds of CCA added system have slope value of one fifth smaller than latter two kinds of CCA system. It means that efficiency of CCA molecules was different among CCAs on tribo-charge. The difference considered to be dissociation energy and/or interaction between each CCA molecule on the core surface.
机译:通过凝聚法制备了外加电荷控制剂(EA-CCA)颗粒,并研究了它们对调色剂电荷的影响。包含110nm直径的金属氧化物核颗粒和CCA分子的EA-CCA颗粒粘附在核表面上。硼配合物(N-1),锌配合物(N-2),铁配合物(N-3)和苯乙烯-丙烯酸与磺酸的共聚物(N-4)四种负电荷控制剂(CCA),分别应用于EA-CCA。使用吹脱法,在高达1,000ppm的CCA浓度范围内,对模型墨粉和EA​​-CCA混合物的摩擦电荷进行了测量。在这些实验范围内,在添加N-2和N-4的系统中,摩擦电荷均随CCA浓度增加至1000ppm而增加。在其他两个添加了CCA的系统中,最大电荷区出现在CCA浓度约为50ppm的摩擦电荷中。在所有CCA中,摩擦电荷与CCA浓度之间的关系在较小的CCA浓度范围(小于20ppm)中呈线性关系。前两种CCA添加系统的斜率值比后两种CCA系统小五分之一。这意味着在摩擦电荷下,CCA分子的CCA分子效率不同。差异被认为是核心表面上每个CCA分子之间的离解能和/或相互作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号