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Development of High Abrasion Resistance Organic Photoreceptors using Cross-linked Overcoat Layer

机译:使用交联保护层开发高耐磨性有机感光体

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摘要

Recently, electrophotographic high-speed digital printers have been making progress in the production printing market. The production printing market requires "high image quality", "high reliability and durability ", and "high productivity " for high-speed digital printers, and "electrostatic stability" and "mechanical abrasion resistance" for organic photoreceptors. The conventional organic photoreceptors have not met such requirements, because the conventional surface layer is less durable to abrasion.rnTo solve the above problem, we have developed a novel overcoat layer having improved abrasion resistance, without reducing charge transport ability.
机译:近来,电子照相高速数字打印机在生产打印市场上已经取得进展。生产型打印市场要求高速数字打印机具有“高图像质量”,“高可靠性和耐久性”和“高生产率”,以及有机感光体需要“静电稳定性”和“机械耐磨性”。常规的有机感光体不能满足这样的要求,因为常规的表面层耐磨性较差。为了解决上述问题,我们开发了一种新型的保护层,其具有改善的耐磨性而不降低电荷传输能力。

著录项

  • 来源
  • 会议地点 Austin TX(US);Austin TX(US);Austin TX(US);Austin TX(US)
  • 作者单位

    Functional Material Development Center, Imaging Engine Development Division, Ricoh Co., Ltd Numazu, Shizuoka/Japan;

    Functional Material Development Center, Imaging Engine Development Division, Ricoh Co., Ltd Numazu, Shizuoka/Japan;

    Functional Material Development Center, Imaging Engine Development Division, Ricoh Co., Ltd Numazu, Shizuoka/Japan;

    Functional Material Development Center, Imaging Engine Development Division, Ricoh Co., Ltd Numazu, Shizuoka/Japan;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 信息处理(信息加工);
  • 关键词

  • 入库时间 2022-08-26 13:59:25

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