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    • 3. 发明授权
    • Multistage deposition process
    • 多级沉积工艺
    • US4482622A
    • 1984-11-13
    • US480642
    • 1983-03-31
    • Philip H. SodenPaul S. Vincett
    • Philip H. SodenPaul S. Vincett
    • G03G17/00G03C5/56G03G17/10G03G5/04C09D5/24
    • G03C5/56
    • A process for depositing particles within a softenable layer to form a migration imaging member wherein the layer is softened by heating, exposed in a first deposition zone to a high impingement rate of vapors of selenium or selenium alloy moving along in a line of sight path from a selenium or selenium alloy source to form a sub-surface monolayer of spherical particles comprising the selenium or selenium alloy, removed from the first deposition zone prior to a substantial dropoff in transmission optical density, exposed to a lower impingement rate of vapors of selenium or selenium alloy in a second deposition zone to increase the size of the spherical particles while maintaining a narrow particle size distribution and achieving a high surface packing density thereby increasing the transmission optical density of the imaging member, and thereafter removed from the second deposition zone prior to a substantial dropoff in transmission optical density.
    • 一种用于在可软化层中沉积颗粒以形成迁移成像构件的方法,其中通过加热软化该层,在第一沉积区中暴露于沿着视线路线移动的硒或硒合金的高冲击速率 硒或硒合金源以形成包含硒或硒合金的球形颗粒的亚表面单层,其在透射光密度显着降低之前从第一沉积区移除,暴露于较低的硒蒸气的冲击速率或 硒合金在第二沉积区中增加球形颗粒的尺寸,同时保持窄的粒度分布并实现高的表面堆积密度,从而增加成像构件的透射光密度,然后在第二沉积区之前从 传输光密度明显下降。