Abstract:
An fluorinated polyester compound is disclosed. The fluorinated polyester compound can be made by combining ingredients comprising a hydroxyl terminated polyphenyl ether; a carboxylic acid terminated perfluoropolyether; an acid catalyst; and a solvent. A coating solution comprising the fluorinated polyester compound and a method of coating a substrate therewith are also disclosed.
Abstract:
The present teachings provide a fuser member. The fuser member includes a substrate layer comprising a polyimide polymer and a fluoro acid. A method of manufacturing a fuser member is also described.
Abstract:
A photoconductor containing a photogenerating layer, and at least one charge transport layer, and an overcoat layer in contact with, and contiguous to the charge transport layer. The overcoat layer is comprised polyethylene-block-polyethylene glycol copolymer and a charge transport component.
Abstract:
An intermediate transfer member that includes a mixture of a poly(amic acid amideimide), a phosphite, an optional polymer, an optional conductive filler component and an optional release layer.
Abstract:
An intermediate transfer member that includes a mixture of a thermoplastic polyimide, a polybenzimidazole, and an optional conductive filler.
Abstract:
A photoconductor that includes, for example, a substrate; an undercoat layer thereover wherein the undercoat layer contains a metal oxide, and a mixture of an epoxy resin and a carboxyl resin; a photogenerating layer; and at least one charge transport layer.
Abstract:
A photoconductor that includes, for example, a substrate, an undercoat layer thereover wherein the undercoat layer contains a metal oxide dispersed in a mixture of a urea formaldehyde resin and a phenolic formaldehyde resin; a photogenerating layer; and at least one charge transport layer.
Abstract:
An intermediate transfer media, such as a belt, that includes for example, a polyamideimide, a phosphate ester and a conductive component, like carbon black.
Abstract:
A photoconductor that includes a supporting substrate, an optional ground plane layer, an optional hole blocking layer, a photogenerating layer, and at least one charge transport layer, and where the charge transport layer contains a polyamideimide.
Abstract:
Provided are techniques for using containers to store objects. One data store from a set of data stores is assigned as a primary data store, wherein the remaining data stores comprise secondary data stores. A container for a group is created on the primary data store. A unique identifier for the container is generated on the primary data store. Metadata for the container is stored on the primary data store. Zero or more objects are stored in the container on the primary data store. For each of the secondary data stores that have objects belonging to the group, a container is created in that secondary data store having the unique identifier, wherein the container spans the primary data store and the secondary data stores, and wherein the objects in the container do not span the primary data store and the secondary data stores.